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市場調査レポート
商品コード
1796967
2D材料市場 - 世界の産業規模、シェア、動向、機会、予測:タイプ別、用途別、地域別、競合別、2020~2030年2D Materials Market - Global Industry Size, Share, Trends, Opportunity, and Forecast, Segmented By Type, By Application, By Region and Competition, 2020-2030F |
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2D材料市場 - 世界の産業規模、シェア、動向、機会、予測:タイプ別、用途別、地域別、競合別、2020~2030年 |
出版日: 2025年08月25日
発行: TechSci Research
ページ情報: 英文 185 Pages
納期: 2~3営業日
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世界の2D材料の市場規模は、2024年に11億6,000万米ドルとなり、2030年にはCAGRは3.75%で、14億3,000万米ドルに達すると予測されています。
原子スケールの厚みと卓越した電気的、機械的、熱的特性を特徴とする2D材料は、さまざまな技術に革命をもたらす可能性があるとして大きな注目を集めています。現在最も著名な2D材料であるグラフェンは、その卓越した導電性、強度、柔軟性により、引き続き市場を独占しています。しかし市場では、六方晶窒化ホウ素(h-BN)、遷移金属ダイカルコゲナイド(TMD)、MXenといった他の材料への関心も高まっています。
市場概要 | |
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予測期間 | 2026~2030年 |
市場規模:2024年 | 11億6,000万米ドル |
市場規模:2030年 | 14億3,000万米ドル |
CAGR:2025~2030年 | 3.75% |
急成長セグメント | グラフェン |
最大市場 | 北米 |
これらの代替材料は、フレキシブルエレクトロニクス、エネルギー貯蔵、コーティング、次世代半導体など、特定の用途向けに検討されています。市場の見通しは明るいものの、いくつかの課題も残っています。生産の拡張性、高額な製造コスト、標準化された統合技術の必要性などが、大量採用の障壁となっています。さらに、ナノ材料の取り扱いに関連する規制上の考慮事項や環境への影響にも慎重に対処しなければなりません。
製薬業界の成長
高い生産コスト
高度な電子アプリケーションの普及
Global 2D Materials Market was valued at USD 1.16 Billion in 2024 and is expected to reach USD 1.43 Billion by 2030 with a CAGR of 3.75%. Two-dimensional materials characterized by their atomic-scale thickness and exceptional electrical, mechanical, and thermal properties are gaining significant attention for their potential to revolutionize a wide array of technologies. Graphene, currently the most prominent 2D material, continues to dominate the market due to its remarkable conductivity, strength, and flexibility. However, the market is also witnessing growing interest in other materials such as hexagonal boron nitride (h-BN), transition metal dichalcogenides (TMDs), and MXenes.
Market Overview | |
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Forecast Period | 2026-2030 |
Market Size 2024 | USD 1.16 Billion |
Market Size 2030 | USD 1.43 Billion |
CAGR 2025-2030 | 3.75% |
Fastest Growing Segment | Graphene |
Largest Market | North America |
These alternatives are being explored for specific applications such as flexible electronics, energy storage, coatings, and next-generation semiconductors. Despite the market's promising outlook, several challenges persist. Scalability of production, high manufacturing costs, and the need for standardized integration techniques remain barriers to mass adoption. Moreover, regulatory considerations and environmental impacts associated with nanomaterial handling must be carefully addressed.
Key Market Drivers
Growth in Pharmaceutical Industry
The rapid expansion of the pharmaceutical industry is emerging as a significant driver of growth within the global 2D materials market. The global pharmaceutical industry has witnessed substantial expansion over the past two decades, reaching approximately USD 1.6 trillion in revenue by 2023. This level of growth positions the industry's market size on par with the gross domestic products (GDPs) of major economies such as Spain, Mexico, or Australia. As the sector increasingly embraces advanced materials to enhance drug delivery, diagnostics, and biomedical research, the unique physicochemical properties of 2D materials such as graphene, molybdenum disulfide (MoS2), and boron nitride are being leveraged to meet evolving performance standards and innovation demands.
2D materials are particularly valued for their ultra-thin structure, high surface area, biocompatibility, and tunable electronic and optical properties. These attributes have opened new avenues in targeted drug delivery systems, where 2D nanocarriers enable precision-controlled release and improved bioavailability. Notably, Alfa Chemistry offers and customizes a diverse range of 2D materials tailored for antimicrobial and antifouling surface applications. In addition to graphene materials (GMs), molybdenum disulfide (MoS2), and hexagonal boron nitride (h-BN), several other 2D materials have also been utilized for such purposes particularly those that facilitate drug delivery and combine photothermal therapy (PTT) with photodynamic therapy (PDT), leveraging their strong near-infrared light absorption capabilities. In addition, their application in biosensors has enhanced the sensitivity and accuracy of diagnostics, aligning with the pharmaceutical industry's increasing focus on early disease detection and personalized medicine.
Key Market Challenges
High Cost of Production
One of the most pressing challenges facing the global 2D materials market is the high cost of production, which significantly hampers large-scale commercialization and industrial adoption. Although materials like graphene and other two-dimensional compounds offer remarkable mechanical, electrical, and thermal properties, the processes required to produce them with high purity, uniformity, and scalability remain complex and expensive.
Current manufacturing methods, such as chemical vapor deposition (CVD), mechanical exfoliation, and liquid-phase exfoliation, often involve high energy consumption, expensive raw materials, and time-intensive procedures. Moreover, achieving consistent material quality and layer thickness across large surface areas adds further technical and financial burden. These constraints not only elevate production costs but also limit the ability to meet growing industrial demand, particularly for applications requiring large volumes such as batteries, coatings, or flexible electronics.
Key Market Trends
Proliferation of Advanced Electronic Applications
The proliferation of advanced electronic applications is shaping a transformative trend in the global 2D materials market. As the demand for faster, smaller, and more energy-efficient devices intensifies, 2D materials are increasingly being adopted across a broad spectrum of next-generation electronic technologies. Their exceptional electrical conductivity, mechanical flexibility, and atomic-level thickness make them ideal candidates for applications where conventional materials fall short.
One of the most notable areas of impact is the development of flexible and wearable electronics. 2D materials such as graphene and transition metal dichalcogenides (TMDs) enable the fabrication of ultra-thin, bendable circuits and sensors, opening new possibilities in smart textiles, biomedical wearables, and flexible displays. Researchers have also showcased the development of printable applications and devices based on 2D materials using digital inkjet printing techniques. Although limited academic studies have focused on printed pressure and touch sensors utilizing 2D materials, several commercial entities have incorporated comparable devices in various demonstration projects. These materials provide the mechanical strength and electrical performance needed for continuous and reliable operation in dynamic environments.
Report Scope
In this report, the Global 2D Materials Market has been segmented into the following categories, in addition to the industry trends which have also been detailed below:
Company Profiles: Detailed analysis of the major companies present in the Global 2D Materials Market.
Global 2D Materials Market report with the given market data, TechSci Research offers customizations according to a company's specific needs. The following customization options are available for the report: