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1718081

リチウムイオン電池材料の世界市場:タイプ、電池化学、形態、用途別-2025-2030年予測

Lithium-ion Battery Materials Market by Type, Battery Chemistry, Form, Application - Global Forecast 2025-2030


出版日
発行
360iResearch
ページ情報
英文 185 Pages
納期
即日から翌営業日
カスタマイズ可能
適宜更新あり
価格
価格表記: USDを日本円(税抜)に換算
本日の銀行送金レート: 1USD=144.64円
リチウムイオン電池材料の世界市場:タイプ、電池化学、形態、用途別-2025-2030年予測
出版日: 2025年04月01日
発行: 360iResearch
ページ情報: 英文 185 Pages
納期: 即日から翌営業日
GIIご利用のメリット
  • 全表示
  • 概要
  • 図表
  • 目次
概要

リチウムイオン電池材料市場の2023年の市場規模は459億5,000万米ドルで、2024年にはCAGR 12.71%で516億1,000万米ドルに成長し、2030年には1,062億5,000万米ドルに達すると予測されています。

リチウムイオン電池材料における基盤:イントロダクション

主な市場の統計
基準年 2023 459億5,000万米ドル
推定年 2024 516億1,000万米ドル
予測年 2030 1,062億5,000万米ドル
CAGR(%) 12.71%

リチウムイオン電池材料はエネルギー貯蔵に革命をもたらし続け、かつてない革新と効率の時代を切り開いた。急速な技術進歩のペースは、自動車の電動化からコンシューマー・エレクトロニクス、大規模エネルギー貯蔵システムに至るまで、あらゆる分野での需要を急増させています。この入門書では、進化する市場情勢を探り、材料組成、先端工学、そして進化する消費者ニーズがどのように融合して市場力学を形成しているのかについて考察します。

最近の電池化学と材料科学の進歩は、コスト削減、充電サイクルの改善、全体的な性能向上に役立っています。研究者と業界のパイオニアは、バッテリーの安定性と信頼性を向上させるため、絶え間なく限界に課題しています。科学的な革新と市場の力が相互に作用することで、出力を高めるだけでなく、厳しい環境・安全基準にも適合するテーラーメイドの材料ソリューションが生み出されています。

この概要の目的は、リチウムイオン電池材料の現状を理解するための明確な枠組みを確立し、重要な促進要因、新たな動向、市場の方向性を決定する微妙な要因を明らかにすることです。包括的な分析を通じて、利害関係者は固有の課題と機会をよりよくナビゲートし、この変革の時代に最適なポジショニングをとることができます。

リチウムイオン電池材料市場の変革

リチウムイオン電池材料の状況は、様々な原動力が市場を再構築する中、大きな変革期を迎えています。技術革新は電池の性能指標に革命をもたらし、エネルギー密度、充電速度、全体的な耐久性の目覚ましい向上を可能にしました。この変革は、材料科学におけるイノベーションと次世代バッテリー技術への戦略的投資の融合が主な動機となっています。

持続可能なエネルギー・ソリューションが業界全体で重視されるようになったことで、資源効率の高い材料と環境に優しい生産プロセスの重要性が強調されるようになりました。電気自動車の急速な普及と再生可能エネルギー・インフラの拡大は、過去の性能ベンチマークに常に課題する技術革新に拍車をかけています。さらに、規制の枠組みや政府のインセンティブは、よりクリーンな代替エネルギーを促進し、環境に配慮した手法の開発を奨励することで、市場のシフトを加速させています。

ソリッド・ステート・バッテリーや強化されたリサイクル・プロトコルといった新たな動向は、従来のモデルをさらに破壊することが期待されています。ナノ構造材料や先進複合材料の研究が深まるにつれ、企業は効率基準を再定義する態勢を整えています。このダイナミックな局面は、レガシー技術から、業界のニーズと持続可能性への社会的期待の両方に対応する、より適応性が高く将来性のある設計への重要な軸足を強調するものです。

主要セグメントに関する洞察

リチウムイオン電池材料市場を深く理解するには、主要なセグメンテーションの枠組みを深く掘り下げる必要があります。この市場は、業界の進化を多角的に捉えることができるいくつかのパラメータに基づいて分析されています。市場をタイプ別に分析すると、負極材料、正極材料、電解質、セパレーターなどの重要な要素が明らかになり、各構成要素が電池全体の性能にどのように寄与しているかについての洞察が得られます。電池の化学的性質による細分化では、酸化コバルトリチウム、リン酸鉄リチウム、酸化マンガンリチウム、酸化ニッケルコバルトアルミニウムリチウム、酸化ニッケルマンガンコバルトリチウムが果たす明確な役割が明らかになり、さらに粒度が細かくなります。これらの細分化は、化学的な複雑さを際立たせるだけでなく、さまざまな用途におけるエネルギー容量と安全性の懸念とのトレードオフを強調します。

さらに形状による区分では、液体、粉末、固体の材料状態のバリエーションを区別します。この分類は、電池を特定の用途に適合させるために不可欠な製造の多様性と性能特性を反映しています。同様に重要なのは用途に基づく区分で、自動車、家電、エネルギー貯蔵システム、産業部門といったダイナミックな市場を網羅しています。各セグメントには独自の要件と課題があり、材料革新へのアプローチをカスタマイズする必要があります。これらの多様な分析レンズの相互作用は、市場セグメンテーションの包括的なビューを提供し、戦略の洗練、生産技術の最適化、競争エコシステムにおける技術の推進を目指す利害関係者にとって極めて重要です。

目次

第1章 序文

第2章 調査手法

第3章 エグゼクティブサマリー

第4章 市場の概要

第5章 市場洞察

  • 市場力学
    • 促進要因
      • 産業および公共施設における大規模バッテリーアプリケーションの需要増加
      • スマートフォン、ノートパソコン、その他のポータブルデバイスなどの家電製品の普及
      • 電気自動車の成長はリチウムイオン電池材料とイノベーションの需要を加速させる
    • 抑制要因
      • リチウムイオン電池の原材料の抽出と加工に関連する問題
    • 機会
      • スマートバッテリー管理システムの開発とパフォーマンス監視のためのIoTの活用
      • 持続可能なリチウムイオン電池材料への多額の投資
    • 課題
      • リチウムイオン電池材料に関連する安全性の懸念
  • 市場セグメンテーション分析
    • タイプ:バッテリーの電圧と容量に影響を与えるカソード材料の重要性が高まっています
    • 電池化学:安全性、熱安定性、長いサイクル寿命により、リン酸鉄リチウム電池の需要が増加
    • 形態:安全性と長寿命のため、リチウムイオン電池材料の固形形態の需要が急増
    • アプリケーション:自動車業界におけるリチウムイオン電池材料の活用の進化
  • ポーターのファイブフォース分析
  • PESTEL分析
    • 政治的
    • 経済
    • 社会
    • 技術的
    • 法律上
    • 環境

第6章 リチウムイオン電池材料市場:タイプ別

  • 陽極材料
  • カソード材料
  • 電解質
  • セパレータ

第7章 リチウムイオン電池材料市場バッテリー化学

  • コバルト酸リチウム
  • リン酸鉄リチウム
  • マンガン酸リチウム
  • リチウムニッケルコバルトアルミニウム酸化物
  • リチウムニッケルマンガンコバルト酸化物

第8章 リチウムイオン電池材料市場:形態別

  • 液体
  • 固体

第9章 リチウムイオン電池材料市場:用途別

  • 自動車
  • 家電
  • エネルギー貯蔵システム
  • 産業

第10章 南北アメリカのリチウムイオン電池材料市場

  • アルゼンチン
  • ブラジル
  • カナダ
  • メキシコ
  • 米国

第11章 アジア太平洋地域のリチウムイオン電池材料市場

  • オーストラリア
  • 中国
  • インド
  • インドネシア
  • 日本
  • マレーシア
  • フィリピン
  • シンガポール
  • 韓国
  • 台湾
  • タイ
  • ベトナム

第12章 欧州・中東・アフリカのリチウムイオン電池材料市場

  • デンマーク
  • エジプト
  • フィンランド
  • フランス
  • ドイツ
  • イスラエル
  • イタリア
  • オランダ
  • ナイジェリア
  • ノルウェー
  • ポーランド
  • カタール
  • ロシア
  • サウジアラビア
  • 南アフリカ
  • スペイン
  • スウェーデン
  • スイス
  • トルコ
  • アラブ首長国連邦
  • 英国

第13章 競合情勢

  • 市場シェア分析, 2023
  • FPNVポジショニングマトリックス, 2023
  • 競合シナリオ分析
  • 戦略分析と提言

企業一覧

  • 3M Company
  • Albemarle Corporation
  • Asahi Kasei Corporation
  • Ascend Elements, Inc.
  • BASF SE
  • BTR New Material Group Co., Ltd.
  • EcoPro BM Co Ltd.
  • Fujitsu Limited
  • Ganfeng Lithium Group Co., Ltd.
  • JFE Chemical Corporation
  • Kureha Corporation
  • L&F CO., Ltd.
  • LG Chem, Ltd.
  • Lohum
  • Mitsubishi Chemical Corporation
  • NEI Corporation
  • Nichia Corporation
  • POSCO FUTURE M Co., Ltd.
  • Resonac Holdings Corporation
  • SGL Carbon SE
  • SQM S.A.
  • Sumitomo Metal Mining Co., Ltd.
  • Tanaka Chemical Corporation
  • Tianqi Lithium Co., Ltd.
  • TODA KOGYO CORP.
  • UBE Corporation
  • UMICORE NV
  • Xiamen Tmax Battery Equipments Limited
図表

LIST OF FIGURES

  • FIGURE 1. LITHIUM-ION BATTERY MATERIALS MARKET MULTI-CURRENCY
  • FIGURE 2. LITHIUM-ION BATTERY MATERIALS MARKET MULTI-LANGUAGE
  • FIGURE 3. LITHIUM-ION BATTERY MATERIALS MARKET RESEARCH PROCESS
  • FIGURE 4. LITHIUM-ION BATTERY MATERIALS MARKET SIZE, 2023 VS 2030
  • FIGURE 5. GLOBAL LITHIUM-ION BATTERY MATERIALS MARKET SIZE, 2018-2030 (USD MILLION)
  • FIGURE 6. GLOBAL LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY REGION, 2023 VS 2024 VS 2030 (USD MILLION)
  • FIGURE 7. GLOBAL LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY COUNTRY, 2023 VS 2024 VS 2030 (USD MILLION)
  • FIGURE 8. GLOBAL LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY TYPE, 2023 VS 2030 (%)
  • FIGURE 9. GLOBAL LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY TYPE, 2023 VS 2024 VS 2030 (USD MILLION)
  • FIGURE 10. GLOBAL LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY BATTERY CHEMISTRY, 2023 VS 2030 (%)
  • FIGURE 11. GLOBAL LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY BATTERY CHEMISTRY, 2023 VS 2024 VS 2030 (USD MILLION)
  • FIGURE 12. GLOBAL LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY FORM, 2023 VS 2030 (%)
  • FIGURE 13. GLOBAL LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY FORM, 2023 VS 2024 VS 2030 (USD MILLION)
  • FIGURE 14. GLOBAL LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY APPLICATION, 2023 VS 2030 (%)
  • FIGURE 15. GLOBAL LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY APPLICATION, 2023 VS 2024 VS 2030 (USD MILLION)
  • FIGURE 16. AMERICAS LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY COUNTRY, 2023 VS 2030 (%)
  • FIGURE 17. AMERICAS LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY COUNTRY, 2023 VS 2024 VS 2030 (USD MILLION)
  • FIGURE 18. UNITED STATES LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY STATE, 2023 VS 2030 (%)
  • FIGURE 19. UNITED STATES LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY STATE, 2023 VS 2024 VS 2030 (USD MILLION)
  • FIGURE 20. ASIA-PACIFIC LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY COUNTRY, 2023 VS 2030 (%)
  • FIGURE 21. ASIA-PACIFIC LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY COUNTRY, 2023 VS 2024 VS 2030 (USD MILLION)
  • FIGURE 22. EUROPE, MIDDLE EAST & AFRICA LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY COUNTRY, 2023 VS 2030 (%)
  • FIGURE 23. EUROPE, MIDDLE EAST & AFRICA LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY COUNTRY, 2023 VS 2024 VS 2030 (USD MILLION)
  • FIGURE 24. LITHIUM-ION BATTERY MATERIALS MARKET SHARE, BY KEY PLAYER, 2023
  • FIGURE 25. LITHIUM-ION BATTERY MATERIALS MARKET, FPNV POSITIONING MATRIX, 2023

LIST OF TABLES

  • TABLE 1. LITHIUM-ION BATTERY MATERIALS MARKET SEGMENTATION & COVERAGE
  • TABLE 2. UNITED STATES DOLLAR EXCHANGE RATE, 2018-2023
  • TABLE 3. GLOBAL LITHIUM-ION BATTERY MATERIALS MARKET SIZE, 2018-2030 (USD MILLION)
  • TABLE 4. GLOBAL LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY REGION, 2018-2030 (USD MILLION)
  • TABLE 5. GLOBAL LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY COUNTRY, 2018-2030 (USD MILLION)
  • TABLE 6. LITHIUM-ION BATTERY MATERIALS MARKET DYNAMICS
  • TABLE 7. GLOBAL LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY TYPE, 2018-2030 (USD MILLION)
  • TABLE 8. GLOBAL LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY ANODE MATERIAL, BY REGION, 2018-2030 (USD MILLION)
  • TABLE 9. GLOBAL LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY CATHODE MATERIAL, BY REGION, 2018-2030 (USD MILLION)
  • TABLE 10. GLOBAL LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY ELECTROLYTE, BY REGION, 2018-2030 (USD MILLION)
  • TABLE 11. GLOBAL LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY SEPARATORS, BY REGION, 2018-2030 (USD MILLION)
  • TABLE 12. GLOBAL LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY BATTERY CHEMISTRY, 2018-2030 (USD MILLION)
  • TABLE 13. GLOBAL LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY LITHIUM COBALT OXIDE, BY REGION, 2018-2030 (USD MILLION)
  • TABLE 14. GLOBAL LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY LITHIUM IRON PHOSPHATE, BY REGION, 2018-2030 (USD MILLION)
  • TABLE 15. GLOBAL LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY LITHIUM MANGANESE OXIDE, BY REGION, 2018-2030 (USD MILLION)
  • TABLE 16. GLOBAL LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY LITHIUM NICKEL COBALT ALUMINUM OXIDE, BY REGION, 2018-2030 (USD MILLION)
  • TABLE 17. GLOBAL LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY LITHIUM NICKEL MANGANESE COBALT OXIDE, BY REGION, 2018-2030 (USD MILLION)
  • TABLE 18. GLOBAL LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY FORM, 2018-2030 (USD MILLION)
  • TABLE 19. GLOBAL LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY LIQUID, BY REGION, 2018-2030 (USD MILLION)
  • TABLE 20. GLOBAL LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY POWDER, BY REGION, 2018-2030 (USD MILLION)
  • TABLE 21. GLOBAL LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY SOLID, BY REGION, 2018-2030 (USD MILLION)
  • TABLE 22. GLOBAL LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY APPLICATION, 2018-2030 (USD MILLION)
  • TABLE 23. GLOBAL LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY AUTOMOTIVE, BY REGION, 2018-2030 (USD MILLION)
  • TABLE 24. GLOBAL LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY CONSUMER ELECTRONICS, BY REGION, 2018-2030 (USD MILLION)
  • TABLE 25. GLOBAL LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY ENERGY STORAGE SYSTEMS, BY REGION, 2018-2030 (USD MILLION)
  • TABLE 26. GLOBAL LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY INDUSTRIAL, BY REGION, 2018-2030 (USD MILLION)
  • TABLE 27. AMERICAS LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY TYPE, 2018-2030 (USD MILLION)
  • TABLE 28. AMERICAS LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY BATTERY CHEMISTRY, 2018-2030 (USD MILLION)
  • TABLE 29. AMERICAS LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY FORM, 2018-2030 (USD MILLION)
  • TABLE 30. AMERICAS LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY APPLICATION, 2018-2030 (USD MILLION)
  • TABLE 31. AMERICAS LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY COUNTRY, 2018-2030 (USD MILLION)
  • TABLE 32. ARGENTINA LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY TYPE, 2018-2030 (USD MILLION)
  • TABLE 33. ARGENTINA LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY BATTERY CHEMISTRY, 2018-2030 (USD MILLION)
  • TABLE 34. ARGENTINA LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY FORM, 2018-2030 (USD MILLION)
  • TABLE 35. ARGENTINA LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY APPLICATION, 2018-2030 (USD MILLION)
  • TABLE 36. BRAZIL LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY TYPE, 2018-2030 (USD MILLION)
  • TABLE 37. BRAZIL LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY BATTERY CHEMISTRY, 2018-2030 (USD MILLION)
  • TABLE 38. BRAZIL LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY FORM, 2018-2030 (USD MILLION)
  • TABLE 39. BRAZIL LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY APPLICATION, 2018-2030 (USD MILLION)
  • TABLE 40. CANADA LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY TYPE, 2018-2030 (USD MILLION)
  • TABLE 41. CANADA LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY BATTERY CHEMISTRY, 2018-2030 (USD MILLION)
  • TABLE 42. CANADA LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY FORM, 2018-2030 (USD MILLION)
  • TABLE 43. CANADA LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY APPLICATION, 2018-2030 (USD MILLION)
  • TABLE 44. MEXICO LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY TYPE, 2018-2030 (USD MILLION)
  • TABLE 45. MEXICO LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY BATTERY CHEMISTRY, 2018-2030 (USD MILLION)
  • TABLE 46. MEXICO LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY FORM, 2018-2030 (USD MILLION)
  • TABLE 47. MEXICO LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY APPLICATION, 2018-2030 (USD MILLION)
  • TABLE 48. UNITED STATES LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY TYPE, 2018-2030 (USD MILLION)
  • TABLE 49. UNITED STATES LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY BATTERY CHEMISTRY, 2018-2030 (USD MILLION)
  • TABLE 50. UNITED STATES LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY FORM, 2018-2030 (USD MILLION)
  • TABLE 51. UNITED STATES LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY APPLICATION, 2018-2030 (USD MILLION)
  • TABLE 52. UNITED STATES LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY STATE, 2018-2030 (USD MILLION)
  • TABLE 53. ASIA-PACIFIC LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY TYPE, 2018-2030 (USD MILLION)
  • TABLE 54. ASIA-PACIFIC LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY BATTERY CHEMISTRY, 2018-2030 (USD MILLION)
  • TABLE 55. ASIA-PACIFIC LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY FORM, 2018-2030 (USD MILLION)
  • TABLE 56. ASIA-PACIFIC LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY APPLICATION, 2018-2030 (USD MILLION)
  • TABLE 57. ASIA-PACIFIC LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY COUNTRY, 2018-2030 (USD MILLION)
  • TABLE 58. AUSTRALIA LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY TYPE, 2018-2030 (USD MILLION)
  • TABLE 59. AUSTRALIA LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY BATTERY CHEMISTRY, 2018-2030 (USD MILLION)
  • TABLE 60. AUSTRALIA LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY FORM, 2018-2030 (USD MILLION)
  • TABLE 61. AUSTRALIA LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY APPLICATION, 2018-2030 (USD MILLION)
  • TABLE 62. CHINA LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY TYPE, 2018-2030 (USD MILLION)
  • TABLE 63. CHINA LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY BATTERY CHEMISTRY, 2018-2030 (USD MILLION)
  • TABLE 64. CHINA LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY FORM, 2018-2030 (USD MILLION)
  • TABLE 65. CHINA LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY APPLICATION, 2018-2030 (USD MILLION)
  • TABLE 66. INDIA LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY TYPE, 2018-2030 (USD MILLION)
  • TABLE 67. INDIA LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY BATTERY CHEMISTRY, 2018-2030 (USD MILLION)
  • TABLE 68. INDIA LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY FORM, 2018-2030 (USD MILLION)
  • TABLE 69. INDIA LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY APPLICATION, 2018-2030 (USD MILLION)
  • TABLE 70. INDONESIA LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY TYPE, 2018-2030 (USD MILLION)
  • TABLE 71. INDONESIA LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY BATTERY CHEMISTRY, 2018-2030 (USD MILLION)
  • TABLE 72. INDONESIA LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY FORM, 2018-2030 (USD MILLION)
  • TABLE 73. INDONESIA LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY APPLICATION, 2018-2030 (USD MILLION)
  • TABLE 74. JAPAN LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY TYPE, 2018-2030 (USD MILLION)
  • TABLE 75. JAPAN LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY BATTERY CHEMISTRY, 2018-2030 (USD MILLION)
  • TABLE 76. JAPAN LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY FORM, 2018-2030 (USD MILLION)
  • TABLE 77. JAPAN LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY APPLICATION, 2018-2030 (USD MILLION)
  • TABLE 78. MALAYSIA LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY TYPE, 2018-2030 (USD MILLION)
  • TABLE 79. MALAYSIA LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY BATTERY CHEMISTRY, 2018-2030 (USD MILLION)
  • TABLE 80. MALAYSIA LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY FORM, 2018-2030 (USD MILLION)
  • TABLE 81. MALAYSIA LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY APPLICATION, 2018-2030 (USD MILLION)
  • TABLE 82. PHILIPPINES LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY TYPE, 2018-2030 (USD MILLION)
  • TABLE 83. PHILIPPINES LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY BATTERY CHEMISTRY, 2018-2030 (USD MILLION)
  • TABLE 84. PHILIPPINES LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY FORM, 2018-2030 (USD MILLION)
  • TABLE 85. PHILIPPINES LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY APPLICATION, 2018-2030 (USD MILLION)
  • TABLE 86. SINGAPORE LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY TYPE, 2018-2030 (USD MILLION)
  • TABLE 87. SINGAPORE LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY BATTERY CHEMISTRY, 2018-2030 (USD MILLION)
  • TABLE 88. SINGAPORE LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY FORM, 2018-2030 (USD MILLION)
  • TABLE 89. SINGAPORE LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY APPLICATION, 2018-2030 (USD MILLION)
  • TABLE 90. SOUTH KOREA LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY TYPE, 2018-2030 (USD MILLION)
  • TABLE 91. SOUTH KOREA LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY BATTERY CHEMISTRY, 2018-2030 (USD MILLION)
  • TABLE 92. SOUTH KOREA LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY FORM, 2018-2030 (USD MILLION)
  • TABLE 93. SOUTH KOREA LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY APPLICATION, 2018-2030 (USD MILLION)
  • TABLE 94. TAIWAN LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY TYPE, 2018-2030 (USD MILLION)
  • TABLE 95. TAIWAN LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY BATTERY CHEMISTRY, 2018-2030 (USD MILLION)
  • TABLE 96. TAIWAN LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY FORM, 2018-2030 (USD MILLION)
  • TABLE 97. TAIWAN LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY APPLICATION, 2018-2030 (USD MILLION)
  • TABLE 98. THAILAND LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY TYPE, 2018-2030 (USD MILLION)
  • TABLE 99. THAILAND LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY BATTERY CHEMISTRY, 2018-2030 (USD MILLION)
  • TABLE 100. THAILAND LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY FORM, 2018-2030 (USD MILLION)
  • TABLE 101. THAILAND LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY APPLICATION, 2018-2030 (USD MILLION)
  • TABLE 102. VIETNAM LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY TYPE, 2018-2030 (USD MILLION)
  • TABLE 103. VIETNAM LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY BATTERY CHEMISTRY, 2018-2030 (USD MILLION)
  • TABLE 104. VIETNAM LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY FORM, 2018-2030 (USD MILLION)
  • TABLE 105. VIETNAM LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY APPLICATION, 2018-2030 (USD MILLION)
  • TABLE 106. EUROPE, MIDDLE EAST & AFRICA LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY TYPE, 2018-2030 (USD MILLION)
  • TABLE 107. EUROPE, MIDDLE EAST & AFRICA LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY BATTERY CHEMISTRY, 2018-2030 (USD MILLION)
  • TABLE 108. EUROPE, MIDDLE EAST & AFRICA LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY FORM, 2018-2030 (USD MILLION)
  • TABLE 109. EUROPE, MIDDLE EAST & AFRICA LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY APPLICATION, 2018-2030 (USD MILLION)
  • TABLE 110. EUROPE, MIDDLE EAST & AFRICA LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY COUNTRY, 2018-2030 (USD MILLION)
  • TABLE 111. DENMARK LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY TYPE, 2018-2030 (USD MILLION)
  • TABLE 112. DENMARK LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY BATTERY CHEMISTRY, 2018-2030 (USD MILLION)
  • TABLE 113. DENMARK LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY FORM, 2018-2030 (USD MILLION)
  • TABLE 114. DENMARK LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY APPLICATION, 2018-2030 (USD MILLION)
  • TABLE 115. EGYPT LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY TYPE, 2018-2030 (USD MILLION)
  • TABLE 116. EGYPT LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY BATTERY CHEMISTRY, 2018-2030 (USD MILLION)
  • TABLE 117. EGYPT LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY FORM, 2018-2030 (USD MILLION)
  • TABLE 118. EGYPT LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY APPLICATION, 2018-2030 (USD MILLION)
  • TABLE 119. FINLAND LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY TYPE, 2018-2030 (USD MILLION)
  • TABLE 120. FINLAND LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY BATTERY CHEMISTRY, 2018-2030 (USD MILLION)
  • TABLE 121. FINLAND LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY FORM, 2018-2030 (USD MILLION)
  • TABLE 122. FINLAND LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY APPLICATION, 2018-2030 (USD MILLION)
  • TABLE 123. FRANCE LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY TYPE, 2018-2030 (USD MILLION)
  • TABLE 124. FRANCE LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY BATTERY CHEMISTRY, 2018-2030 (USD MILLION)
  • TABLE 125. FRANCE LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY FORM, 2018-2030 (USD MILLION)
  • TABLE 126. FRANCE LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY APPLICATION, 2018-2030 (USD MILLION)
  • TABLE 127. GERMANY LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY TYPE, 2018-2030 (USD MILLION)
  • TABLE 128. GERMANY LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY BATTERY CHEMISTRY, 2018-2030 (USD MILLION)
  • TABLE 129. GERMANY LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY FORM, 2018-2030 (USD MILLION)
  • TABLE 130. GERMANY LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY APPLICATION, 2018-2030 (USD MILLION)
  • TABLE 131. ISRAEL LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY TYPE, 2018-2030 (USD MILLION)
  • TABLE 132. ISRAEL LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY BATTERY CHEMISTRY, 2018-2030 (USD MILLION)
  • TABLE 133. ISRAEL LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY FORM, 2018-2030 (USD MILLION)
  • TABLE 134. ISRAEL LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY APPLICATION, 2018-2030 (USD MILLION)
  • TABLE 135. ITALY LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY TYPE, 2018-2030 (USD MILLION)
  • TABLE 136. ITALY LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY BATTERY CHEMISTRY, 2018-2030 (USD MILLION)
  • TABLE 137. ITALY LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY FORM, 2018-2030 (USD MILLION)
  • TABLE 138. ITALY LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY APPLICATION, 2018-2030 (USD MILLION)
  • TABLE 139. NETHERLANDS LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY TYPE, 2018-2030 (USD MILLION)
  • TABLE 140. NETHERLANDS LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY BATTERY CHEMISTRY, 2018-2030 (USD MILLION)
  • TABLE 141. NETHERLANDS LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY FORM, 2018-2030 (USD MILLION)
  • TABLE 142. NETHERLANDS LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY APPLICATION, 2018-2030 (USD MILLION)
  • TABLE 143. NIGERIA LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY TYPE, 2018-2030 (USD MILLION)
  • TABLE 144. NIGERIA LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY BATTERY CHEMISTRY, 2018-2030 (USD MILLION)
  • TABLE 145. NIGERIA LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY FORM, 2018-2030 (USD MILLION)
  • TABLE 146. NIGERIA LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY APPLICATION, 2018-2030 (USD MILLION)
  • TABLE 147. NORWAY LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY TYPE, 2018-2030 (USD MILLION)
  • TABLE 148. NORWAY LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY BATTERY CHEMISTRY, 2018-2030 (USD MILLION)
  • TABLE 149. NORWAY LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY FORM, 2018-2030 (USD MILLION)
  • TABLE 150. NORWAY LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY APPLICATION, 2018-2030 (USD MILLION)
  • TABLE 151. POLAND LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY TYPE, 2018-2030 (USD MILLION)
  • TABLE 152. POLAND LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY BATTERY CHEMISTRY, 2018-2030 (USD MILLION)
  • TABLE 153. POLAND LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY FORM, 2018-2030 (USD MILLION)
  • TABLE 154. POLAND LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY APPLICATION, 2018-2030 (USD MILLION)
  • TABLE 155. QATAR LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY TYPE, 2018-2030 (USD MILLION)
  • TABLE 156. QATAR LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY BATTERY CHEMISTRY, 2018-2030 (USD MILLION)
  • TABLE 157. QATAR LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY FORM, 2018-2030 (USD MILLION)
  • TABLE 158. QATAR LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY APPLICATION, 2018-2030 (USD MILLION)
  • TABLE 159. RUSSIA LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY TYPE, 2018-2030 (USD MILLION)
  • TABLE 160. RUSSIA LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY BATTERY CHEMISTRY, 2018-2030 (USD MILLION)
  • TABLE 161. RUSSIA LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY FORM, 2018-2030 (USD MILLION)
  • TABLE 162. RUSSIA LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY APPLICATION, 2018-2030 (USD MILLION)
  • TABLE 163. SAUDI ARABIA LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY TYPE, 2018-2030 (USD MILLION)
  • TABLE 164. SAUDI ARABIA LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY BATTERY CHEMISTRY, 2018-2030 (USD MILLION)
  • TABLE 165. SAUDI ARABIA LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY FORM, 2018-2030 (USD MILLION)
  • TABLE 166. SAUDI ARABIA LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY APPLICATION, 2018-2030 (USD MILLION)
  • TABLE 167. SOUTH AFRICA LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY TYPE, 2018-2030 (USD MILLION)
  • TABLE 168. SOUTH AFRICA LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY BATTERY CHEMISTRY, 2018-2030 (USD MILLION)
  • TABLE 169. SOUTH AFRICA LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY FORM, 2018-2030 (USD MILLION)
  • TABLE 170. SOUTH AFRICA LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY APPLICATION, 2018-2030 (USD MILLION)
  • TABLE 171. SPAIN LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY TYPE, 2018-2030 (USD MILLION)
  • TABLE 172. SPAIN LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY BATTERY CHEMISTRY, 2018-2030 (USD MILLION)
  • TABLE 173. SPAIN LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY FORM, 2018-2030 (USD MILLION)
  • TABLE 174. SPAIN LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY APPLICATION, 2018-2030 (USD MILLION)
  • TABLE 175. SWEDEN LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY TYPE, 2018-2030 (USD MILLION)
  • TABLE 176. SWEDEN LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY BATTERY CHEMISTRY, 2018-2030 (USD MILLION)
  • TABLE 177. SWEDEN LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY FORM, 2018-2030 (USD MILLION)
  • TABLE 178. SWEDEN LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY APPLICATION, 2018-2030 (USD MILLION)
  • TABLE 179. SWITZERLAND LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY TYPE, 2018-2030 (USD MILLION)
  • TABLE 180. SWITZERLAND LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY BATTERY CHEMISTRY, 2018-2030 (USD MILLION)
  • TABLE 181. SWITZERLAND LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY FORM, 2018-2030 (USD MILLION)
  • TABLE 182. SWITZERLAND LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY APPLICATION, 2018-2030 (USD MILLION)
  • TABLE 183. TURKEY LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY TYPE, 2018-2030 (USD MILLION)
  • TABLE 184. TURKEY LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY BATTERY CHEMISTRY, 2018-2030 (USD MILLION)
  • TABLE 185. TURKEY LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY FORM, 2018-2030 (USD MILLION)
  • TABLE 186. TURKEY LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY APPLICATION, 2018-2030 (USD MILLION)
  • TABLE 187. UNITED ARAB EMIRATES LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY TYPE, 2018-2030 (USD MILLION)
  • TABLE 188. UNITED ARAB EMIRATES LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY BATTERY CHEMISTRY, 2018-2030 (USD MILLION)
  • TABLE 189. UNITED ARAB EMIRATES LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY FORM, 2018-2030 (USD MILLION)
  • TABLE 190. UNITED ARAB EMIRATES LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY APPLICATION, 2018-2030 (USD MILLION)
  • TABLE 191. UNITED KINGDOM LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY TYPE, 2018-2030 (USD MILLION)
  • TABLE 192. UNITED KINGDOM LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY BATTERY CHEMISTRY, 2018-2030 (USD MILLION)
  • TABLE 193. UNITED KINGDOM LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY FORM, 2018-2030 (USD MILLION)
  • TABLE 194. UNITED KINGDOM LITHIUM-ION BATTERY MATERIALS MARKET SIZE, BY APPLICATION, 2018-2030 (USD MILLION)
  • TABLE 195. LITHIUM-ION BATTERY MATERIALS MARKET SHARE, BY KEY PLAYER, 2023
  • TABLE 196. LITHIUM-ION BATTERY MATERIALS MARKET, FPNV POSITIONING MATRIX, 2023
目次
Product Code: MRR-564C6E98E516

The Lithium-ion Battery Materials Market was valued at USD 45.95 billion in 2023 and is projected to grow to USD 51.61 billion in 2024, with a CAGR of 12.71%, reaching USD 106.25 billion by 2030.

Foundations in Lithium-ion Battery Materials: An Introduction

KEY MARKET STATISTICS
Base Year [2023] USD 45.95 billion
Estimated Year [2024] USD 51.61 billion
Forecast Year [2030] USD 106.25 billion
CAGR (%) 12.71%

Lithium-ion battery materials have continued to revolutionize energy storage, ushering in an era of unprecedented innovation and efficiency. The rapid pace of technological progress has driven a surge in demand across sectors, from automotive electrification to consumer electronics and large-scale energy storage systems. This introductory review explores the evolving landscape, delivering insights into how material composition, advanced engineering, and evolving consumer needs converge to shape market dynamics.

Recent advances in battery chemistry and material science have been instrumental in reducing costs, improving charge cycles, and enhancing overall performance. Researchers and industry pioneers are relentlessly pushing the envelope to improve the stability and reliability of batteries. The interplay between scientific innovation and market forces has resulted in tailored material solutions that not only boost power output but also meet stringent environmental and safety standards.

The purpose of this overview is to establish a clear framework for understanding the current state of lithium-ion battery materials, highlighting critical drivers, emerging trends, and the nuanced factors that determine market direction. Through a comprehensive analysis, stakeholders can better navigate the inherent challenges and opportunities, positioning themselves optimally in this transformative era.

Transformative Shifts in the Landscape

The landscape of lithium-ion battery materials is undergoing a significant transformation as various driving forces reshape the market. Technological breakthroughs have revolutionized the performance metrics of batteries, enabling remarkable improvements in energy density, charging speeds, and overall durability. This transformation is largely motivated by a fusion of innovation in material sciences and strategic investments in next-generation battery technologies.

Industry-wide emphasis on sustainable energy solutions has accentuated the importance of resource-efficient materials and greener production processes. The surge in electric vehicle adoption and the expansion of renewable energy infrastructure are fueling innovations that consistently challenge historical performance benchmarks. Additionally, regulatory frameworks and government incentives have accelerated market shifts by promoting cleaner energy alternatives and encouraging the development of environmentally responsible practices.

Emerging trends such as solid-state batteries and enhanced recycling protocols promise to further disrupt traditional models. As research delves deeper into nanostructured materials and advanced composites, companies are poised to redefine efficiency standards. This dynamic phase underscores a critical pivot from legacy technologies to more adaptable, future-proof designs that address both industry needs and societal expectations toward sustainability.

Key Segmentation Insights

A nuanced understanding of the lithium-ion battery materials market necessitates a deep dive into its key segmentation frameworks. The market is dissected based on several parameters that provide a multi-dimensional view of the industry's evolution. Analyzing the market based on type illuminates critical elements such as anode materials, cathode materials, electrolytes, and separators, offering insights into how each component contributes to overall battery performance. The segmentation by battery chemistry provides further granularity, revealing the distinct roles played by lithium cobalt oxide, lithium iron phosphate, lithium manganese oxide, lithium nickel cobalt aluminum oxide, and lithium nickel manganese cobalt oxide. These subdivisions not only highlight the chemical intricacies but also emphasize the trade-offs between energy capacity and safety concerns in different applications.

Further segmentation by form distinguishes between liquid, powder, and solid variations in material states. This classification reflects the manufacturing versatility and performance characteristics essential for tailoring batteries to specific uses. Equally important is the segmentation based on application, which encapsulates the dynamic markets of automotive, consumer electronics, energy storage systems, and industrial sectors. Each segment has its unique requirements and challenges, dictating customized approaches to material innovation. The interplay among these diverse analytical lenses offers a comprehensive view of market segmentation, crucial for stakeholders aiming to refine strategies, optimize production techniques, and drive forward technology in a competitive ecosystem.

Based on Type, market is studied across Anode Material, Cathode Material, Electrolyte, and Separators.

Based on Battery Chemistry, market is studied across Lithium Cobalt Oxide, Lithium Iron Phosphate, Lithium Manganese Oxide, Lithium Nickel Cobalt Aluminum Oxide, and Lithium Nickel Manganese Cobalt Oxide.

Based on Form, market is studied across Liquid, Powder, and Solid.

Based on Application, market is studied across Automotive, Consumer Electronics, Energy Storage Systems, and Industrial.

Key Regional Insights

The global perspective on lithium-ion battery materials is enriched by varied regional dynamics, with significant insights derived from the Americas, Europe, Middle East & Africa, and Asia-Pacific. In the Americas, the emphasis is placed on innovative automotive and consumer electronics developments, where technological integration and robust infrastructural support fuel market expansion. Europe, Middle East & Africa feature a blend of regulatory impetus and strategic initiatives that pave the way for increased investments in renewable energy and advanced material research, fostering collaboration and competitive progress. Meanwhile, in the Asia-Pacific region, rapid industrial growth and a vibrant manufacturing landscape provide a fertile ground for scaling production and integrating breakthrough technologies in battery materials.

The distinct yet interconnected roles of these regions contribute to a resilient global ecosystem. Regional variances in policy-making, economic investment, and technological readiness highlight the adaptive strategies employed to meet local market needs. Understanding these geographical nuances is critical for stakeholders seeking to tap into regional advantages and address localized challenges while maintaining a cohesive global strategy.

Based on Region, market is studied across Americas, Asia-Pacific, and Europe, Middle East & Africa. The Americas is further studied across Argentina, Brazil, Canada, Mexico, and United States. The United States is further studied across California, Florida, Illinois, New York, Ohio, Pennsylvania, and Texas. The Asia-Pacific is further studied across Australia, China, India, Indonesia, Japan, Malaysia, Philippines, Singapore, South Korea, Taiwan, Thailand, and Vietnam. The Europe, Middle East & Africa is further studied across Denmark, Egypt, Finland, France, Germany, Israel, Italy, Netherlands, Nigeria, Norway, Poland, Qatar, Russia, Saudi Arabia, South Africa, Spain, Sweden, Switzerland, Turkey, United Arab Emirates, and United Kingdom.

Key Companies Insights

The competitive arena of lithium-ion battery materials is marked by the involvement of several industry leaders, each contributing uniquely to the momentum of technological progress. Companies such as 3M Company, Albemarle Corporation, Asahi Kasei Corporation, and Ascend Elements, Inc. have been pivotal in research and development, driving forward innovations that set industry standards. BASF SE and BTR New Material Group Co., Ltd. have played a significant role in integrating advanced material solutions that bolster battery performance and operational efficiency.

EcoPro BM Co Ltd. alongside Fujitsu Limited and Ganfeng Lithium Group Co., Ltd. have showcased formidable strength in leveraging state-of-the-art manufacturing techniques to enhance battery longevity and safety. The contributions from JFE Chemical Corporation and Kureha Corporation further underscore the emphasis on sustainable material practices and cost efficiencies in the production process. L&F CO., Ltd., LG Chem, Ltd., and Lohum have exemplified excellence in aligning technological advancements with market demands, while Mitsubishi Chemical Corporation and NEI Corporation have consistently supported the evolution of battery chemistry. Nichia Corporation and POSCO FUTURE M Co., Ltd. drive enhanced operational frameworks, resonating with resilient supply chain management and integrated innovation.

Additional trailblazers such as Resonac Holdings Corporation, SGL Carbon SE, SQM S.A., Sumitomo Metal Mining Co., Ltd., and Tanaka Chemical Corporation continue to expand the frontiers of battery material applications. Tianqi Lithium Co., Ltd., TODA KOGYO CORP., UBE Corporation, UMICORE NV, and Xiamen Tmax Battery Equipments Limited round out a robust market tapestry, collectively crafting a landscape that balances aggressive research endeavors with established industrial practices. Their concerted efforts emphasize precision, efficiency, and a forward-thinking approach essential for the sustained advancement of this critical sector.

The report delves into recent significant developments in the Lithium-ion Battery Materials Market, highlighting leading vendors and their innovative profiles. These include 3M Company, Albemarle Corporation, Asahi Kasei Corporation, Ascend Elements, Inc., BASF SE, BTR New Material Group Co., Ltd., EcoPro BM Co Ltd., Fujitsu Limited, Ganfeng Lithium Group Co., Ltd., JFE Chemical Corporation, Kureha Corporation, L&F CO., Ltd., LG Chem, Ltd., Lohum, Mitsubishi Chemical Corporation, NEI Corporation, Nichia Corporation, POSCO FUTURE M Co., Ltd., Resonac Holdings Corporation, SGL Carbon SE, SQM S.A., Sumitomo Metal Mining Co., Ltd., Tanaka Chemical Corporation, Tianqi Lithium Co., Ltd., TODA KOGYO CORP., UBE Corporation, UMICORE NV, and Xiamen Tmax Battery Equipments Limited. Actionable Recommendations for Industry Leaders

For decision-makers navigating the dynamic landscape of lithium-ion battery materials, strategic, actionable insights are imperative. First, a focus on continuous innovation is paramount. Investing in research and development, especially in areas like solid-state battery configurations and advanced composite materials, can facilitate breakthroughs that set new industry standards. Companies should prioritize collaborations with research institutions and technology partners to stay ahead of the curve.

Emphasis should also be placed on optimizing supply chains. As market segmentation indicates, material efficiency-from anode and cathode components to electrolytes and separators-is essential in driving down costs and enhancing performance. Industry leaders must look to integrate digital manufacturing and real-time monitoring systems that ensure quality and reduce waste throughout the production lifecycle. Additionally, adapting to regional regulatory frameworks plays a critical role in mitigating risks. Being proactive in regulatory compliance and anticipating shifts in environmental policies will secure long-term market sustainability.

Finally, a balanced approach towards market expansion is recommended. Tapping into emerging applications such as energy storage systems while reinforcing core segments like automotive and consumer electronics will diversify revenue streams and solidify market presence. With these actionable strategies, companies can confidently steer their operations in a future marked by innovation, efficiency, and robust market growth.

Conclusion

In summary, the landscape of lithium-ion battery materials is characterized by robust technological advancements, dynamic market segmentation, and significant regional differentiation. The convergence of targeted research, strategic investments, and evolving consumer demands has set the stage for a transformative era. By integrating diverse material types, optimizing battery chemistry, and leveraging advancements in processing forms, the industry is carving a path toward enhanced performance and sustainability.

Moreover, the complementary growth across key regions and the strategic deployment of resources by leading companies provide a solid foundation for future development. Navigating this complex environment requires a delicate balance between innovation and operational efficiency, a task that demands clear vision and active strategy adjustment. Ultimately, stakeholders who remain agile and forward-thinking will be best positioned to capitalize on the myriad opportunities this market has to offer.

Table of Contents

1. Preface

  • 1.1. Objectives of the Study
  • 1.2. Market Segmentation & Coverage
  • 1.3. Years Considered for the Study
  • 1.4. Currency & Pricing
  • 1.5. Language
  • 1.6. Stakeholders

2. Research Methodology

  • 2.1. Define: Research Objective
  • 2.2. Determine: Research Design
  • 2.3. Prepare: Research Instrument
  • 2.4. Collect: Data Source
  • 2.5. Analyze: Data Interpretation
  • 2.6. Formulate: Data Verification
  • 2.7. Publish: Research Report
  • 2.8. Repeat: Report Update

3. Executive Summary

4. Market Overview

5. Market Insights

  • 5.1. Market Dynamics
    • 5.1.1. Drivers
      • 5.1.1.1. Rising demand for larger-scale battery applications in industrial and utility settings
      • 5.1.1.2. Proliferation of consumer electronics such as smartphones, laptops, and other portable devices
      • 5.1.1.3. Growth of electric vehicles accelerates the demand for lithium-ion battery materials and innovations
    • 5.1.2. Restraints
      • 5.1.2.1. Issues associated with the extraction and processing of raw materials for lithium-ion batteries
    • 5.1.3. Opportunities
      • 5.1.3.1. Development in smart battery management systems and leveraging IoT for performance monitoring
      • 5.1.3.2. Significant investments in sustainable lithium-ion battery materials
    • 5.1.4. Challenges
      • 5.1.4.1. Safety concerns associated with lithium-ion battery materials
  • 5.2. Market Segmentation Analysis
    • 5.2.1. Type: Increasing significance of cathode material as it influences the voltage and capacity of the battery
    • 5.2.2. Battery Chemistry: Increasing demand for lithium iron phosphate batteries owing to safety,thermal stability and long cycle life
    • 5.2.3. Form: Proliferating demand for solid form of lithium-ion battery materials owing to safety and longevity
    • 5.2.4. Applications: Evolving utilization of lithium-ion battery materials in the automotive industry
  • 5.3. Porter's Five Forces Analysis
    • 5.3.1. Threat of New Entrants
    • 5.3.2. Threat of Substitutes
    • 5.3.3. Bargaining Power of Customers
    • 5.3.4. Bargaining Power of Suppliers
    • 5.3.5. Industry Rivalry
  • 5.4. PESTLE Analysis
    • 5.4.1. Political
    • 5.4.2. Economic
    • 5.4.3. Social
    • 5.4.4. Technological
    • 5.4.5. Legal
    • 5.4.6. Environmental

6. Lithium-ion Battery Materials Market, by Type

  • 6.1. Introduction
  • 6.2. Anode Material
  • 6.3. Cathode Material
  • 6.4. Electrolyte
  • 6.5. Separators

7. Lithium-ion Battery Materials Market, by Battery Chemistry

  • 7.1. Introduction
  • 7.2. Lithium Cobalt Oxide
  • 7.3. Lithium Iron Phosphate
  • 7.4. Lithium Manganese Oxide
  • 7.5. Lithium Nickel Cobalt Aluminum Oxide
  • 7.6. Lithium Nickel Manganese Cobalt Oxide

8. Lithium-ion Battery Materials Market, by Form

  • 8.1. Introduction
  • 8.2. Liquid
  • 8.3. Powder
  • 8.4. Solid

9. Lithium-ion Battery Materials Market, by Application

  • 9.1. Introduction
  • 9.2. Automotive
  • 9.3. Consumer Electronics
  • 9.4. Energy Storage Systems
  • 9.5. Industrial

10. Americas Lithium-ion Battery Materials Market

  • 10.1. Introduction
  • 10.2. Argentina
  • 10.3. Brazil
  • 10.4. Canada
  • 10.5. Mexico
  • 10.6. United States

11. Asia-Pacific Lithium-ion Battery Materials Market

  • 11.1. Introduction
  • 11.2. Australia
  • 11.3. China
  • 11.4. India
  • 11.5. Indonesia
  • 11.6. Japan
  • 11.7. Malaysia
  • 11.8. Philippines
  • 11.9. Singapore
  • 11.10. South Korea
  • 11.11. Taiwan
  • 11.12. Thailand
  • 11.13. Vietnam

12. Europe, Middle East & Africa Lithium-ion Battery Materials Market

  • 12.1. Introduction
  • 12.2. Denmark
  • 12.3. Egypt
  • 12.4. Finland
  • 12.5. France
  • 12.6. Germany
  • 12.7. Israel
  • 12.8. Italy
  • 12.9. Netherlands
  • 12.10. Nigeria
  • 12.11. Norway
  • 12.12. Poland
  • 12.13. Qatar
  • 12.14. Russia
  • 12.15. Saudi Arabia
  • 12.16. South Africa
  • 12.17. Spain
  • 12.18. Sweden
  • 12.19. Switzerland
  • 12.20. Turkey
  • 12.21. United Arab Emirates
  • 12.22. United Kingdom

13. Competitive Landscape

  • 13.1. Market Share Analysis, 2023
  • 13.2. FPNV Positioning Matrix, 2023
  • 13.3. Competitive Scenario Analysis
    • 13.3.1. Innovative LiMnO2 electrode technology offers sustainable, high-energy alternative to Ni-Co batteries for EVs
    • 13.3.2. Ascend Elements drives U.S. lithium-ion segment with sustainable, decarbonized cathode materials
    • 13.3.3. Innovative collaboration between NEO Battery Materials and INNOX eco-M to revolutionize sustainable silicon anodes for enhanced lithium-ion battery performance and durability
    • 13.3.4. Asahi Kasei's groundbreaking electrolyte innovation enhances lithium-ion battery performance, size, and cost-efficiency
    • 13.3.5. Metso unveils groundbreaking pCAM plant to enhance lithium-ion battery material production
    • 13.3.6. Arkema and ProLogium advance e-mobility through strategic partnership for next-gen lithium ceramic battery materials in France
    • 13.3.7. American Battery Technology Company pioneers scalable recycling of lithium-ion batteries
    • 13.3.8. Arkema's strategic acquisition of Proionic catalyzes innovation in sustainable lithium-ion battery materials
    • 13.3.9. Zeta Energy and Log9 Materials partner to drive Li-S battery innovation
    • 13.3.10. Orbia Fluor & Energy Materials expands electrolyte production for U.S. lithium-ion supply chain
    • 13.3.11. Innovative collaboration advances sustainable recycling in lithium-ion battery materials with eco-friendly electrode technology
    • 13.3.12. BASF and SK On embark on strategic collaboration to lead innovation in NA and APAC lithium-ion battery markets
    • 13.3.13. Birla Carbon's strategic acquisition of Nanocyl advances its leadership in lithium-ion battery materials and sustainability
    • 13.3.14. Redwood Materials' strategic acquisition of Redux Recycling strengthens EU presence and promotes sustainable battery supply chain expansion
  • 13.4. Strategy Analysis & Recommendation
    • 13.4.1. BASF SE
    • 13.4.2. UBE Corporation
    • 13.4.3. Fujitsu Limited

Companies Mentioned

  • 1. 3M Company
  • 2. Albemarle Corporation
  • 3. Asahi Kasei Corporation
  • 4. Ascend Elements, Inc.
  • 5. BASF SE
  • 6. BTR New Material Group Co., Ltd.
  • 7. EcoPro BM Co Ltd.
  • 8. Fujitsu Limited
  • 9. Ganfeng Lithium Group Co., Ltd.
  • 10. JFE Chemical Corporation
  • 11. Kureha Corporation
  • 12. L&F CO., Ltd.
  • 13. LG Chem, Ltd.
  • 14. Lohum
  • 15. Mitsubishi Chemical Corporation
  • 16. NEI Corporation
  • 17. Nichia Corporation
  • 18. POSCO FUTURE M Co., Ltd.
  • 19. Resonac Holdings Corporation
  • 20. SGL Carbon SE
  • 21. SQM S.A.
  • 22. Sumitomo Metal Mining Co., Ltd.
  • 23. Tanaka Chemical Corporation
  • 24. Tianqi Lithium Co., Ltd.
  • 25. TODA KOGYO CORP.
  • 26. UBE Corporation
  • 27. UMICORE NV
  • 28. Xiamen Tmax Battery Equipments Limited