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固体イオン伝導体市場 - 世界の産業規模、シェア、動向、機会、予測:用途別、イオン伝導体タイプ別、エンドユーザー産業別、地域別、競合別、2020~2030年

Solid Ion Conductor Market - Global Industry Size, Share, Trends, Opportunity, and Forecast, Segmented, By Application, By Ionic Conductor Type, By End-User Industry, By Region, By Competition, 2020-2030F


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ページ情報
英文 180 Pages
納期
2~3営業日
カスタマイズ可能
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固体イオン伝導体市場 - 世界の産業規模、シェア、動向、機会、予測:用途別、イオン伝導体タイプ別、エンドユーザー産業別、地域別、競合別、2020~2030年
出版日: 2025年07月29日
発行: TechSci Research
ページ情報: 英文 180 Pages
納期: 2~3営業日
GIIご利用のメリット
  • 全表示
  • 概要
  • 目次
概要

固体イオン伝導体市場の2024年の市場規模は28億1,000万米ドルで、2030年にはCAGR 15.92%で68億8,000万米ドルに達すると予測されています。

固体イオン伝導体市場とは、固体状態でイオンを伝導することができる材料の開発、生産、商業化に焦点を当てた世界の産業を指し、一般的には先進電池技術、特に固体電池の固体電解質として機能します。従来の液体電解質とは異なり、固体イオン伝導体は、熱安定性の向上、安全性の強化、エネルギー密度の向上の可能性などの大きな利点を提供し、次世代エネルギー貯蔵システムにおいて重要な要素となっています。

市場概要
予測期間 2026~2030年
市場規模:2024年 28億1,000万米ドル
市場規模:2030年 68億8,000万米ドル
CAGR:2025~2030年 15.92%
急成長セグメント 燃料電池
最大市場 北米

これらの材料には、機械的完全性と電極との化学的適合性を維持しながら効率的なイオン輸送を促進するセラミック(リチウムランタンジルコニウム酸化物、LLZO など)、硫化物ベースの導体、ポリマー、複合材料が含まれます。同市場は、電気自動車(EV)、家電機器、産業用電力貯蔵、医療機器向けの固体リチウムイオン電池を筆頭に、幅広い用途を包含しています。世界のエネルギー転換が加速する中、より安全で長持ちし、エネルギー密度の高い電池ソリューションの需要が高まっており、固体イオン伝導体は、電池メーカーやエネルギー貯蔵開発者のイノベーションパイプラインの基礎的な構成要素として浮上しています。

主な市場促進要因

電気自動車(EV)における次世代エネルギー貯蔵システムへの需要の高まり

主な市場課題

製造の複雑さとコストの制約

主な市場動向

先進固体電池アーキテクチャにおける固体イオン伝導体の統合の増加

目次

第1章 概要

第2章 調査手法

第3章 エグゼクティブサマリー

第4章 顧客の声

第5章 世界の固体イオン伝導体市場展望

  • 市場規模・予測
    • 金額別
  • 市場シェア・予測
    • 用途別(固体電池、燃料電池、スーパーキャパシタ、センサー)
    • イオン伝導体タイプ別(セラミックイオン伝導体、ポリマーイオン伝導体、複合イオン伝導体)
    • エンドユーザー産業別(エレクトロニクス、自動車、エネルギー貯蔵、航空宇宙)
    • 地域別
  • 企業別(2024年)
  • 市場マップ

第6章 北米の固体イオン伝導体市場展望

  • 市場規模・予測
  • 市場シェア・予測
  • 北米:国別分析
    • 米国
    • カナダ
    • メキシコ

第7章 欧州の固体イオン伝導体市場展望

  • 市場規模・予測
  • 市場シェア・予測
  • 欧州:国別分析
    • ドイツ
    • 英国
    • イタリア
    • フランス
    • スペイン

第8章 アジア太平洋地域の固体イオン伝導体市場展望

  • 市場規模・予測
  • 市場シェア・予測
  • アジア太平洋地域:国別分析
    • 中国
    • インド
    • 日本
    • 韓国
    • オーストラリア

第9章 南米の固体イオン伝導体市場展望

  • 市場規模・予測
  • 市場シェア・予測
  • 南米:国別分析
    • ブラジル
    • アルゼンチン
    • コロンビア

第10章 中東・アフリカの固体イオン伝導体市場展望

  • 市場規模・予測
  • 市場シェア・予測
  • 中東・アフリカ:国別分析
    • 南アフリカ
    • サウジアラビア
    • アラブ首長国連邦
    • クウェート
    • トルコ

第11章 市場力学

  • 促進要因
  • 課題

第12章 市場動向と発展

  • 合併と買収
  • 製品上市
  • 最近の動向

第13章 企業プロファイル

  • ProLogium Technology Co., Ltd.
  • Sakti3 Inc.
  • LG Chem Ltd.
  • Toyota Tsusho Corporation
  • Ilika plc
  • Samsung SDI Co., Ltd.
  • BASF SE
  • QuantumScape Corporation
  • Solid Power, Inc.
  • Panasonic Corporation

第14章 戦略的提言

第15章 調査会社について・免責事項

目次
Product Code: 30238

The Solid Ion Conductor Market was valued at USD 2.81 Billion in 2024 and is expected to reach USD 6.88 Billion by 2030 with a CAGR of 15.92%. The Solid Ion Conductor Market refers to the global industry focused on the development, production, and commercialization of materials capable of conducting ions in the solid state, typically serving as solid electrolytes in advanced battery technologies, particularly solid-state batteries. Unlike conventional liquid electrolytes, solid ion conductors offer significant advantages such as improved thermal stability, enhanced safety, and the potential for higher energy densities, making them a critical enabler in next-generation energy storage systems.

Market Overview
Forecast Period2026-2030
Market Size 2024USD 2.81 Billion
Market Size 2030USD 6.88 Billion
CAGR 2025-203015.92%
Fastest Growing SegmentFuel Cells
Largest MarketNorth America

These materials include ceramics (such as lithium lanthanum zirconium oxide or LLZO), sulfide-based conductors, polymers, and composite materials that facilitate efficient ion transport while maintaining mechanical integrity and chemical compatibility with electrodes. The market encompasses a wide range of applications, with the most prominent being in solid-state lithium-ion batteries for electric vehicles (EVs), consumer electronics, industrial power storage, and medical devices. As the global energy transition accelerates, driven by the demand for safer, longer-lasting, and more energy-dense battery solutions, solid ion conductors have emerged as a foundational component in the innovation pipeline for battery manufacturers and energy storage developers.

Key Market Drivers

Rising Demand for Next-Generation Energy Storage Systems in Electric Vehicles (EVs)

The increasing demand for electric vehicles globally is significantly driving the growth of the solid ion conductor market, as automakers and battery manufacturers seek safer, more efficient, and higher-performance alternatives to conventional lithium-ion batteries. Solid ion conductors, particularly those used in solid-state batteries, offer substantial advantages such as higher energy density, longer cycle life, faster charging capabilities, and enhanced safety due to their non-flammable nature. These features make them ideal for electric vehicles, which require reliable and long-lasting energy storage systems to compete with traditional internal combustion engine vehicles.

As EV adoption accelerates due to government mandates, environmental regulations, and consumer preference for sustainable mobility, there is a growing need for advanced battery technologies that can meet the performance demands of both mainstream and premium electric cars. Solid ion conductors enable the development of batteries that can operate at higher voltages and offer faster ionic mobility, leading to better thermal stability and reduced risk of thermal runaway-a critical concern in current lithium-ion chemistries. The shift towards solid-state batteries that utilize solid ion conductors also allows for more compact and lightweight battery packs, contributing to improved energy efficiency and extended driving range, which are essential for consumer confidence in EVs.

Furthermore, as global automakers invest heavily in dedicated EV platforms and battery gigafactories, there is a rising focus on sourcing next-generation solid electrolytes and solid ion conducting materials to scale production. Strategic partnerships between automakers, battery developers, and materials science companies are emerging to advance solid ion conductor research, reduce production costs, and accelerate commercialization timelines. Countries like the United States, China, Germany, and Japan are offering significant funding and policy support to establish localized supply chains for solid-state battery materials, with solid ion conductors at the center of these efforts.

The push to reduce dependency on critical raw materials like cobalt and liquid electrolytes is also accelerating the transition toward safer and more sustainable battery chemistries powered by solid ion conductors. As electric vehicles continue to gain market share across passenger cars, commercial fleets, two-wheelers, and public transport, the demand for solid ion conductors is expected to rise exponentially. The convergence of safety, performance, and regulatory advantages offered by solid ion conductors in EV battery systems makes this technology a foundational component in the next phase of automotive electrification. Global EV sales surpassed 14 million units in 2024, driving exponential demand for advanced battery technologies. Next-generation energy storage systems are projected to power over 70% of new EVs by 2030. Solid-state batteries could enable 20-30% higher energy density compared to current lithium-ion solutions. The global EV battery market is expected to exceed USD 250 billion by 2030, with solid-state solutions gaining a rising share. Over 500 GWh of solid-state battery capacity is projected to be operational globally by the end of the decade.

Key Market Challenges

High Manufacturing Complexity and Cost Constraints

One of the most significant challenges facing the solid ion conductor market is the high complexity and cost associated with manufacturing these advanced materials at scale. Solid ion conductors, especially those used in solid-state batteries and advanced energy storage systems, require precise synthesis techniques, stringent purity levels, and controlled fabrication environments to ensure ionic conductivity and structural stability.

These requirements not only make the production process technologically intensive but also considerably expensive, which limits the cost competitiveness of solid ion conductors compared to conventional liquid electrolytes and other alternative materials. For example, materials such as garnet-type oxides, sulfides, and NASICON-based ceramics often require high-temperature sintering, vacuum-based thin-film deposition, and glove-box processing to avoid moisture sensitivity and ensure phase stability. These steps are energy-intensive, time-consuming, and demand sophisticated infrastructure, which many manufacturers, especially in emerging markets, find difficult to adopt.

Furthermore, the scaling of these materials from laboratory prototypes to commercially viable volumes remains a challenge due to variability in material behavior, interface compatibility, and reproducibility. As the demand for next-generation batteries increases, especially for applications in electric vehicles, aerospace, and grid storage, the inability to produce high-performance solid ion conductors at a competitive cost and scale may delay their widespread adoption. Additionally, the current supply chain for raw materials used in solid ion conductors is limited and highly specialized, increasing the risk of supply disruptions and price volatility. The lack of established industrial standards and the absence of large-scale manufacturing frameworks further compound this issue, as companies face uncertainty in design choices and performance expectations.

Research and development efforts are ongoing to reduce processing steps, develop cost-effective solid electrolytes, and improve compatibility with mass manufacturing techniques like roll-to-roll coating or co-sintering with cathode materials. However, the transition from R&D to large-scale commercialization remains a complex and capital-intensive endeavor. The challenge is further amplified by the need for high-throughput quality control, failure analysis, and long-term testing to ensure that solid ion conductors can meet the stringent safety, longevity, and performance requirements of advanced battery systems. Overall, the high cost of production, technological complexity, and lack of mature supply chain infrastructure collectively form a significant barrier to the mass commercialization of solid ion conductors, despite their immense potential in revolutionizing energy storage systems.

Key Market Trends

Rising Integration of Solid Ion Conductors in Advanced Solid-State Battery Architectures

The global solid ion conductor market is witnessing a transformative shift with the increasing adoption of solid-state battery architectures, which rely heavily on high-performance ion-conducting materials for improved energy density, safety, and lifecycle performance. As conventional liquid electrolyte batteries face growing scrutiny over flammability, leakage, and limited thermal stability, solid ion conductors are rapidly emerging as the preferred alternative due to their ability to facilitate efficient ionic transport in a solid medium while eliminating the risk of combustion.

This trend is particularly prominent in high-growth sectors such as electric vehicles, aerospace systems, consumer electronics, and defense applications, where compactness, reliability, and safety are paramount. Material innovations, especially in ceramic and sulfide-based conductors, are driving improved conductivity levels and compatibility with high-voltage cathodes and lithium metal anodes, enabling a significant leap in battery energy storage capability. The ongoing research into garnet-type, NASICON-type, and perovskite-based materials is enabling higher conductivity and chemical stability under demanding operational environments. Moreover, the integration of solid ion conductors into flexible and wearable energy storage devices has created new dimensions for commercialization, as manufacturers seek form-factor versatility along with performance.

With large battery producers and OEMs initiating pilot production lines for solid-state batteries, the demand for industrial-scale, cost-effective solid ion conductor solutions is accelerating. Additionally, solid ion conductors are gaining interest in hybrid battery designs and all-solid-state thin-film batteries, reinforcing their role in driving next-generation energy storage innovation. This trend is further strengthened by the increasing number of partnerships between material developers and battery manufacturers aimed at refining the processing, sintering, and interface engineering of solid electrolytes to enhance overall cell efficiency. As solid-state battery technologies continue to advance toward commercialization, the market for solid ion conductors is expected to see exponential growth, supported by regulatory pushes for safer energy storage systems and the emergence of vertically integrated supply chains across Asia, North America, and Europe.

Key Market Players

  • ProLogium Technology Co., Ltd.
  • Sakti3 Inc.
  • LG Chem Ltd.
  • Toyota Tsusho Corporation
  • Ilika plc
  • Samsung SDI Co., Ltd.
  • BASF SE
  • QuantumScape Corporation
  • Solid Power, Inc.
  • Panasonic Corporation

Report Scope:

In this report, the Global Solid Ion Conductor Market has been segmented into the following categories, in addition to the industry trends which have also been detailed below:

Solid Ion Conductor Market, By Application:

  • Solid State Batteries
  • Fuel Cells
  • Supercapacitors
  • Sensors

Solid Ion Conductor Market, By Ionic Conductor Type:

  • Ceramic Ion Conductors
  • Polymer Ion Conductors
  • Composite Ion Conductors

Solid Ion Conductor Market, By End-User Industry:

  • Electronics
  • Automotive
  • Energy Storage
  • Aerospace

Solid Ion Conductor Market, By Region:

  • North America
    • United States
    • Canada
    • Mexico
  • Europe
    • France
    • United Kingdom
    • Italy
    • Germany
    • Spain
  • Asia-Pacific
    • China
    • India
    • Japan
    • Australia
    • South Korea
  • South America
    • Brazil
    • Argentina
    • Colombia
  • Middle East & Africa
    • South Africa
    • Saudi Arabia
    • UAE
    • Kuwait
    • Turkey

Competitive Landscape

Company Profiles: Detailed analysis of the major companies presents in the Global Solid Ion Conductor Market.

Available Customizations:

Global Solid Ion Conductor Market report with the given Market data, Tech Sci Research offers customizations according to a company's specific needs. The following customization options are available for the report:

Company Information

  • Detailed analysis and profiling of additional Market players (up to five).

Table of Contents

1. Product Overview

  • 1.1. Market Definition
  • 1.2. Scope of the Market
    • 1.2.1. Markets Covered
    • 1.2.2. Years Considered for Study
  • 1.3. Key Market Segmentations

2. Research Methodology

  • 2.1. Objective of the Study
  • 2.2. Baseline Methodology
  • 2.3. Formulation of the Scope
  • 2.4. Assumptions and Limitations
  • 2.5. Sources of Research
    • 2.5.1. Secondary Research
    • 2.5.2. Primary Research
  • 2.6. Approach for the Market Study
    • 2.6.1. The Bottom-Up Approach
    • 2.6.2. The Top-Down Approach
  • 2.7. Methodology Followed for Calculation of Market Size & Market Shares
  • 2.8. Forecasting Methodology
    • 2.8.1. Data Triangulation & Validation

3. Executive Summary

  • 3.1. Overview of the Market
  • 3.2. Overview of Key Market Segmentations
  • 3.3. Overview of Key Market Players
  • 3.4. Overview of Key Regions/Countries
  • 3.5. Overview of Market Drivers, Challenges, and Trends

4. Voice of Customer

5. Global Solid Ion Conductor Market Outlook

  • 5.1. Market Size & Forecast
    • 5.1.1. By Value
  • 5.2. Market Share & Forecast
    • 5.2.1. By Application (Solid State Batteries, Fuel Cells, Supercapacitors, Sensors)
    • 5.2.2. By Ionic Conductor Type (Ceramic Ion Conductors, Polymer Ion Conductors, Composite Ion Conductors)
    • 5.2.3. By End-User Industry (Electronics, Automotive, Energy Storage, Aerospace)
    • 5.2.4. By Region
  • 5.3. By Company (2024)
  • 5.4. Market Map

6. North America Solid Ion Conductor Market Outlook

  • 6.1. Market Size & Forecast
    • 6.1.1. By Value
  • 6.2. Market Share & Forecast
    • 6.2.1. By Application
    • 6.2.2. By Ionic Conductor Type
    • 6.2.3. By End-User Industry
    • 6.2.4. By Country
  • 6.3. North America: Country Analysis
    • 6.3.1. United States Solid Ion Conductor Market Outlook
      • 6.3.1.1. Market Size & Forecast
        • 6.3.1.1.1. By Value
      • 6.3.1.2. Market Share & Forecast
        • 6.3.1.2.1. By Application
        • 6.3.1.2.2. By Ionic Conductor Type
        • 6.3.1.2.3. By End-User Industry
    • 6.3.2. Canada Solid Ion Conductor Market Outlook
      • 6.3.2.1. Market Size & Forecast
        • 6.3.2.1.1. By Value
      • 6.3.2.2. Market Share & Forecast
        • 6.3.2.2.1. By Application
        • 6.3.2.2.2. By Ionic Conductor Type
        • 6.3.2.2.3. By End-User Industry
    • 6.3.3. Mexico Solid Ion Conductor Market Outlook
      • 6.3.3.1. Market Size & Forecast
        • 6.3.3.1.1. By Value
      • 6.3.3.2. Market Share & Forecast
        • 6.3.3.2.1. By Application
        • 6.3.3.2.2. By Ionic Conductor Type
        • 6.3.3.2.3. By End-User Industry

7. Europe Solid Ion Conductor Market Outlook

  • 7.1. Market Size & Forecast
    • 7.1.1. By Value
  • 7.2. Market Share & Forecast
    • 7.2.1. By Application
    • 7.2.2. By Ionic Conductor Type
    • 7.2.3. By End-User Industry
    • 7.2.4. By Country
  • 7.3. Europe: Country Analysis
    • 7.3.1. Germany Solid Ion Conductor Market Outlook
      • 7.3.1.1. Market Size & Forecast
        • 7.3.1.1.1. By Value
      • 7.3.1.2. Market Share & Forecast
        • 7.3.1.2.1. By Application
        • 7.3.1.2.2. By Ionic Conductor Type
        • 7.3.1.2.3. By End-User Industry
    • 7.3.2. United Kingdom Solid Ion Conductor Market Outlook
      • 7.3.2.1. Market Size & Forecast
        • 7.3.2.1.1. By Value
      • 7.3.2.2. Market Share & Forecast
        • 7.3.2.2.1. By Application
        • 7.3.2.2.2. By Ionic Conductor Type
        • 7.3.2.2.3. By End-User Industry
    • 7.3.3. Italy Solid Ion Conductor Market Outlook
      • 7.3.3.1. Market Size & Forecast
        • 7.3.3.1.1. By Value
      • 7.3.3.2. Market Share & Forecast
        • 7.3.3.2.1. By Application
        • 7.3.3.2.2. By Ionic Conductor Type
        • 7.3.3.2.3. By End-User Industry
    • 7.3.4. France Solid Ion Conductor Market Outlook
      • 7.3.4.1. Market Size & Forecast
        • 7.3.4.1.1. By Value
      • 7.3.4.2. Market Share & Forecast
        • 7.3.4.2.1. By Application
        • 7.3.4.2.2. By Ionic Conductor Type
        • 7.3.4.2.3. By End-User Industry
    • 7.3.5. Spain Solid Ion Conductor Market Outlook
      • 7.3.5.1. Market Size & Forecast
        • 7.3.5.1.1. By Value
      • 7.3.5.2. Market Share & Forecast
        • 7.3.5.2.1. By Application
        • 7.3.5.2.2. By Ionic Conductor Type
        • 7.3.5.2.3. By End-User Industry

8. Asia-Pacific Solid Ion Conductor Market Outlook

  • 8.1. Market Size & Forecast
    • 8.1.1. By Value
  • 8.2. Market Share & Forecast
    • 8.2.1. By Application
    • 8.2.2. By Ionic Conductor Type
    • 8.2.3. By End-User Industry
    • 8.2.4. By Country
  • 8.3. Asia-Pacific: Country Analysis
    • 8.3.1. China Solid Ion Conductor Market Outlook
      • 8.3.1.1. Market Size & Forecast
        • 8.3.1.1.1. By Value
      • 8.3.1.2. Market Share & Forecast
        • 8.3.1.2.1. By Application
        • 8.3.1.2.2. By Ionic Conductor Type
        • 8.3.1.2.3. By End-User Industry
    • 8.3.2. India Solid Ion Conductor Market Outlook
      • 8.3.2.1. Market Size & Forecast
        • 8.3.2.1.1. By Value
      • 8.3.2.2. Market Share & Forecast
        • 8.3.2.2.1. By Application
        • 8.3.2.2.2. By Ionic Conductor Type
        • 8.3.2.2.3. By End-User Industry
    • 8.3.3. Japan Solid Ion Conductor Market Outlook
      • 8.3.3.1. Market Size & Forecast
        • 8.3.3.1.1. By Value
      • 8.3.3.2. Market Share & Forecast
        • 8.3.3.2.1. By Application
        • 8.3.3.2.2. By Ionic Conductor Type
        • 8.3.3.2.3. By End-User Industry
    • 8.3.4. South Korea Solid Ion Conductor Market Outlook
      • 8.3.4.1. Market Size & Forecast
        • 8.3.4.1.1. By Value
      • 8.3.4.2. Market Share & Forecast
        • 8.3.4.2.1. By Application
        • 8.3.4.2.2. By Ionic Conductor Type
        • 8.3.4.2.3. By End-User Industry
    • 8.3.5. Australia Solid Ion Conductor Market Outlook
      • 8.3.5.1. Market Size & Forecast
        • 8.3.5.1.1. By Value
      • 8.3.5.2. Market Share & Forecast
        • 8.3.5.2.1. By Application
        • 8.3.5.2.2. By Ionic Conductor Type
        • 8.3.5.2.3. By End-User Industry

9. South America Solid Ion Conductor Market Outlook

  • 9.1. Market Size & Forecast
    • 9.1.1. By Value
  • 9.2. Market Share & Forecast
    • 9.2.1. By Application
    • 9.2.2. By Ionic Conductor Type
    • 9.2.3. By End-User Industry
    • 9.2.4. By Country
  • 9.3. South America: Country Analysis
    • 9.3.1. Brazil Solid Ion Conductor Market Outlook
      • 9.3.1.1. Market Size & Forecast
        • 9.3.1.1.1. By Value
      • 9.3.1.2. Market Share & Forecast
        • 9.3.1.2.1. By Application
        • 9.3.1.2.2. By Ionic Conductor Type
        • 9.3.1.2.3. By End-User Industry
    • 9.3.2. Argentina Solid Ion Conductor Market Outlook
      • 9.3.2.1. Market Size & Forecast
        • 9.3.2.1.1. By Value
      • 9.3.2.2. Market Share & Forecast
        • 9.3.2.2.1. By Application
        • 9.3.2.2.2. By Ionic Conductor Type
        • 9.3.2.2.3. By End-User Industry
    • 9.3.3. Colombia Solid Ion Conductor Market Outlook
      • 9.3.3.1. Market Size & Forecast
        • 9.3.3.1.1. By Value
      • 9.3.3.2. Market Share & Forecast
        • 9.3.3.2.1. By Application
        • 9.3.3.2.2. By Ionic Conductor Type
        • 9.3.3.2.3. By End-User Industry

10. Middle East and Africa Solid Ion Conductor Market Outlook

  • 10.1. Market Size & Forecast
    • 10.1.1. By Value
  • 10.2. Market Share & Forecast
    • 10.2.1. By Application
    • 10.2.2. By Ionic Conductor Type
    • 10.2.3. By End-User Industry
    • 10.2.4. By Country
  • 10.3. Middle East and Africa: Country Analysis
    • 10.3.1. South Africa Solid Ion Conductor Market Outlook
      • 10.3.1.1. Market Size & Forecast
        • 10.3.1.1.1. By Value
      • 10.3.1.2. Market Share & Forecast
        • 10.3.1.2.1. By Application
        • 10.3.1.2.2. By Ionic Conductor Type
        • 10.3.1.2.3. By End-User Industry
    • 10.3.2. Saudi Arabia Solid Ion Conductor Market Outlook
      • 10.3.2.1. Market Size & Forecast
        • 10.3.2.1.1. By Value
      • 10.3.2.2. Market Share & Forecast
        • 10.3.2.2.1. By Application
        • 10.3.2.2.2. By Ionic Conductor Type
        • 10.3.2.2.3. By End-User Industry
    • 10.3.3. UAE Solid Ion Conductor Market Outlook
      • 10.3.3.1. Market Size & Forecast
        • 10.3.3.1.1. By Value
      • 10.3.3.2. Market Share & Forecast
        • 10.3.3.2.1. By Application
        • 10.3.3.2.2. By Ionic Conductor Type
        • 10.3.3.2.3. By End-User Industry
    • 10.3.4. Kuwait Solid Ion Conductor Market Outlook
      • 10.3.4.1. Market Size & Forecast
        • 10.3.4.1.1. By Value
      • 10.3.4.2. Market Share & Forecast
        • 10.3.4.2.1. By Application
        • 10.3.4.2.2. By Ionic Conductor Type
        • 10.3.4.2.3. By End-User Industry
    • 10.3.5. Turkey Solid Ion Conductor Market Outlook
      • 10.3.5.1. Market Size & Forecast
        • 10.3.5.1.1. By Value
      • 10.3.5.2. Market Share & Forecast
        • 10.3.5.2.1. By Application
        • 10.3.5.2.2. By Ionic Conductor Type
        • 10.3.5.2.3. By End-User Industry

11. Market Dynamics

  • 11.1. Drivers
  • 11.2. Challenges

12. Market Trends & Developments

  • 12.1. Merger & Acquisition (If Any)
  • 12.2. Product Launches (If Any)
  • 12.3. Recent Developments

13. Company Profiles

  • 13.1. ProLogium Technology Co., Ltd.
    • 13.1.1. Business Overview
    • 13.1.2. Key Revenue and Financials
    • 13.1.3. Recent Developments
    • 13.1.4. Key Personnel/Key Contact Person
    • 13.1.5. Key Product/Services Offered
  • 13.2. Sakti3 Inc.
  • 13.3. LG Chem Ltd.
  • 13.4. Toyota Tsusho Corporation
  • 13.5. Ilika plc
  • 13.6. Samsung SDI Co., Ltd.
  • 13.7. BASF SE
  • 13.8. QuantumScape Corporation
  • 13.9. Solid Power, Inc.
  • 13.10. Panasonic Corporation

14. Strategic Recommendations

15. About Us & Disclaimer