1 エグゼクティブ・サマリー
2 序文
2.1 概要
2.2 ステークホルダー
2.3 調査範囲
2.4 調査方法
2.4.1 データマイニング
2.4.2 データ分析
2.4.3 データの検証
2.4.4 リサーチアプローチ
2.5 リサーチソース
2.5.1 一次調査ソース
2.5.2 セカンダリーリサーチソース
2.5.3 前提条件
3 市場動向分析
3.1 はじめに
3.2 推進要因
3.3 抑制要因
3.4 機会
3.5 脅威
3.6 製品分析
3.7 技術分析
3.8 アプリケーション分析
3.9 新興市場
3.10 コビッド19の影響
4 ポーターズファイブフォース分析
4.1 供給者の交渉力
4.2 買い手の交渉力
4.3 代替品の脅威
4.4 新規参入の脅威
4.5 競争上のライバル関係
5 先端炭素材料の世界市場、製品種類別
5.1 はじめに
5.2 炭素繊維
5.3 特殊黒鉛
5.4 カーボンナノチューブ
5.5 グラフェン
5.6 炭素発泡体
5.7 その他の製品タイプ
6 先端炭素材料の世界市場、技術別
6.1 導入
6.2 アーク放電
6.3 レーザーアブレーション
6.4 化学気相成長
6.5 触媒化学気相成長法
6.6 高圧一酸化炭素反応
6.7 液相カーボンナノチューブ精製
6.8 その他の技術
7 先端炭素材料の世界市場、用途別
7.1 はじめに
7.2 航空宇宙と防衛
7.3 エレクトロニクス
7.4 スポーツ
7.5 自動車
7.6 建設
7.7 冶金
7.8 ヘルスケア
7.9 エネルギー
7.10 その他の用途
8 先端炭素材料の世界市場、地域別
8.1 はじめに
8.2 北アメリカ
8.2.1 アメリカ
8.2.2 カナダ
8.2.3 メキシコ
8.3 ヨーロッパ
8.3.1 ドイツ
8.3.2 イギリス
8.3.3 イタリア
8.3.4 フランス
8.3.5 スペイン
8.3.6 その他のヨーロッパ
8.4 アジア太平洋
8.4.1 日本
8.4.2 中国
8.4.3 インド
8.4.4 オーストラリア
8.4.5 ニュージーランド
8.4.6 韓国
8.4.7 その他のアジア太平洋地域
8.5 南アメリカ
8.5.1 アルゼンチン
8.5.2 ブラジル
8.5.3 チリ
8.5.4 その他の南アメリカ地域
8.6 中東/アフリカ
8.6.1 サウジアラビア
8.6.2 アラブ首長国連邦
8.6.3 カタール
8.6.4 南アフリカ
8.6.5 その他の中東/アフリカ地域
9 主要開発
9.1 契約、パートナーシップ、コラボレーション、合弁事業
9.2 買収と合併
9.3 新製品上市
9.4 拡張
9.5 その他の主要戦略
10 企業プロフィール
10.1 Toray Industries
10.2 Solvay
10.3 Mitsubishi Chemical Carbon Fiber and Composites, Inc.
10.4 Teijin Limited
10.5 Showa Denko K.K.
10.6 Zoltek
10.7 Arkema S.A.
10.8 Hanwha Chemical
10.9 Nippon Graphite Fiber Corporation
10.10 Hexcel Corporation
10.11 Jiangsu Cnano Technology Co., Ltd.
10.12 Graphenea, Inc.
10.13 Toho Tenax Co. Ltd.
10.14 XG Sciences, Inc.
10.15 Graphite India Limited
表一覧
1 先端炭素材料の世界市場展望、地域別(2022-2030年) ($MN)
2 先進炭素材料の世界市場展望、製品種類別 (2022-2030) ($MN)
3 先進炭素材料の世界市場展望、炭素繊維別 (2022-2030) ($MN)
4 先進炭素材料の世界市場展望、特殊黒鉛別 (2022-2030) ($MN)
5 先進炭素材料の世界市場展望、カーボンナノチューブ別 (2022-2030) ($MN)
6 先進炭素材料の世界市場展望、グラフェン別 (2022-2030) ($MN)
7 先進炭素材料の世界市場展望、炭素発泡体別 (2022-2030) ($MN)
8 先進炭素材料の世界市場展望、その他の製品種類別 (2022-2030) ($MN)
9 先進炭素材料の世界市場展望、技術別 (2022-2030) ($MN)
10 先進炭素材料の世界市場展望、アーク放電別 (2022-2030) ($MN)
11 先進炭素材料の世界市場展望、レーザーアブレーション別 (2022-2030) ($MN)
12 先進炭素材料の世界市場展望、化学気相成長法別 (2022-2030) ($MN)
13 先進炭素材料の世界市場展望、触媒化学気相成長法別 (2022-2030) ($MN)
14 先進炭素材料の世界市場展望、高圧一酸化炭素反応別 (2022-2030) ($MN)
15 先端炭素材料の世界市場展望、液相カーボンナノチューブ精製別 (2022-2030) ($MN)
16 先端炭素材料の世界市場展望、その他の技術別 (2022-2030) ($MN)
17 先端炭素材料の世界市場展望、用途別 (2022-2030) ($MN)
18 先進炭素材料の世界市場展望、航空宇宙・防衛別 (2022-2030) ($MN)
19 先進炭素材料の世界市場展望、エレクトロニクス別 (2022-2030) ($MN)
20 先進炭素材料の世界市場展望、スポーツ別 (2022-2030) ($MN)
21 先進炭素材料の世界市場展望:自動車別 (2022-2030) ($MN)
22 先進炭素材料の世界市場展望:建築別 (2022-2030) ($MN)
23 先進炭素材料の世界市場展望:冶金別 (2022-2030) ($MN)
24 先進炭素材料の世界市場展望:ヘルスケア別 (2022-2030) ($MN)
25 先進炭素材料の世界市場展望:エネルギー別 (2022-2030) ($MN)
26 先進炭素材料の世界市場展望、その他の用途別 (2022-2030) ($MN)
注)北アメリカ、ヨーロッパ、APAC、南アメリカ、中東/アフリカ地域の表も上記と同様に表記しています。
According to the International Carbon Materials Association, the global demand for advanced carbon materials is expected to grow significantly over the next decade, driven by their increasing applications in high-performance batteries, lightweight composites, and next-generation electronics.
Market Dynamics:
Driver:
Increasing need for energy storage and electronics
The growing use of materials like graphene and carbon nanotubes in electronics and energy storage devices like batteries and super capacitors is driving the market for advanced carbon materials. Additionally, these materials are crucial for creating high-performance consumer electronics, electric vehicles (EVs), and renewable energy storage systems because of their exceptional electrical conductivity, energy density, and durability.
Restraint:
High production costs and restricted scale economies
The high production cost of advanced carbon materials is one of the main barriers to their market. Carbon nanotube (CNT) production and chemical vapor deposition (CVD) are two examples of techniques that are more expensive than traditional materials because they involve intricate procedures, specialized tools, and a significant amount of energy. Furthermore, a lot of advanced carbon materials are still made in small quantities, which makes it difficult to realize economies of scale.
Opportunity:
Growing utilization in the defense and aerospace sectors
High strength-to-weight ratios, thermal stability, and resistance to harsh environments are qualities that the aerospace and defense industries are constantly looking for in materials. To address these needs, advanced carbon materials—especially carbon fibers and graphene—are being utilized more frequently in aerospace structures, satellite parts, and defense-related applications. For instance, aircraft employ carbon fiber composites to lower weight, increase fuel efficiency, and boost performance. However, high-performance sensors, lightweight armor, and anti-radar coatings are being developed using graphene's unique properties.
Threat:
Sophisticated and established alternatives are in fierce competition
The market for advanced carbon materials is facing serious competition from both well-established materials and cutting-edge substitutes. Because of their well-understood properties, lower costs, and established supply chains, traditional materials like metals, polymers, and ceramics continue to dominate many applications. For example, high-performance plastics and advanced alloys compete fiercely with carbon fiber composites and graphene-based materials in the automotive and aerospace industries. Moreover, new materials are developing quickly and may surpass carbon materials in some high-growth areas.
Covid-19 Impact:
The market for advanced carbon materials was severely impacted by the COVID-19 pandemic, which resulted in production halts, supply chain disruptions, and project timeline delays because of lockdowns and other restrictions in key manufacturing regions. The short-term demand for advanced carbon materials decreased as a result of the downturn in significant end-use industries like aerospace, automotive, and construction. Additionally, the pandemic hastened the adoption of technologies that depend on these materials, though, as evidenced by the increased focus on sustainability, renewable energy, and innovative healthcare. These technologies include energy storage systems, electronics, and medical devices.
The Carbon Fibers segment is expected to be the largest during the forecast period
The market for advanced carbon materials is dominated by the carbon fiber segment. Carbon fibers are used extensively in many different industries, such as sports equipment, automotive, aerospace, and construction, because of their great stiffness, outstanding heat and chemical resistance, and remarkable strength-to-weight ratio. Furthermore, the demand for and market dominance of carbon fibers are sustained by the growing emphasis in the automotive and aerospace sectors on fuel efficiency, emission reduction, and lightweight materials, as well as by technological advancements in production.
The Chemical Vapor Deposition segment is expected to have the highest CAGR during the forecast period
In the market for advanced carbon materials, chemical vapour deposition (CVD) typically shows the highest CAGR. Due to its ability to produce accurate and uniform coatings on substrates, chemical vapour deposition (CVD) is a widely used technique for producing high-quality carbon materials, including graphene and carbon nanotubes. This process is preferred because it can produce materials with precise properties needed for cutting-edge applications in composites, electronics, and energy storage. Moreover, the CVD segment continues to grow significantly due to its crucial role in the development of next-generation technologies, which is being driven by industry demands for more advanced and high-performance materials.
Region with largest share:
The market for advanced carbon materials is dominated by North America. The region's strong industrial base, large R&D investments and concentration of top technology firms and research institutes are the main causes of its dominance. The demand for advanced carbon materials is driven by North America's strong emphasis on innovation and technological advancement, particularly in sectors like electronics, automotive, and aerospace.
Region with highest CAGR:
In the market for advanced carbon materials, Asia-Pacific is growing at the highest CAGR. The region's growing industrial sector, improved manufacturing capabilities, and significant investments in infrastructure and technology are the main drivers of this rapid growth. Key nations like China, India, and Japan are driving demand for advanced carbon materials in a variety of applications, such as energy storage, automotive, and electronics. Moreover, favourable government policies, a growing consumer base, and a strong emphasis on technological advancement are driving the region's market growth at an accelerated rate.
Key players in the market:
Some of the key players in Advanced Carbon Materials market include Toray Industries, Solvay, Mitsubishi Chemical Carbon Fiber and Composites, Inc., Teijin Limited, Showa Denko K.K., Zoltek, Arkema S.A., Hanwha Chemical, Nippon Graphite Fiber Corporation, Hexcel Corporation, Jiangsu Cnano Technology Co., Ltd., Graphenea, Inc., Toho Tenax Co. Ltd., XG Sciences, Inc. and Graphite India Limited.
Key Developments:
In June 2024, Solvay, a leader in rare earth materials supply for catalysis and electronics, and Cyclic Materials, an advanced metals recycling company building a circular supply chain for rare earth elements and other critical metals, announced the signing of an agreement for the supply of recycled mixed rare earth oxide (rMREO) from Cyclic Materials to Solvay, with shipments to begin in late 2024.
In May 2024, Arkema has agreed to acquire Dow’s flexible packaging laminating adhesives business, one of the leading producers of adhesives for the flexible packaging market, generating annual sales of around US$250 million. The proposed acquisition will significantly expand Arkema’s portfolio of solutions for flexible packaging, enabling the Group to become a key player in this attractive market.
In May 2023, Toray Industries, Inc., announced that it has signed a four-year global partnership agreement with star Japanese sprinter Abdul Hakim Sani Brown. Under this arrangement, he will receive support from Toray and appear in its advertisements while helping develop materials and taking part in its social contribution initiatives.
Product Types Covered:
• Carbon Fibers
• Special Graphite
• Carbon Nanotubes
• Graphene
• Carbon Foams
• Other Product Types
Technologies Covered:
• Arc Discharge
• Laser Ablation
• Chemical Vapor Deposition
• Catalyzed Chemical Vapor Deposition
• High-pressure Carbon Monoxide Reaction
• Liquid Phase Carbon Nanotubes Purification
• Other Technologies
Applications Covered:
• Aerospace and Defence
• Electronics
• Sports
• Automotive
• Construction
• Metallurgy
• Healthcare
• Energy
• Other Applications
Regions Covered:
• North America
US
Canada
Mexico
• Europe
Germany
UK
Italy
France
Spain
Rest of Europe
• Asia Pacific
Japan
China
India
Australia
New Zealand
South Korea
Rest of Asia Pacific
• South America
Argentina
Brazil
Chile
Rest of South America
• Middle East & Africa
Saudi Arabia
UAE
Qatar
South Africa
Rest of Middle East & Africa
What our report offers:
- Market share assessments for the regional and country-level segments
- Strategic recommendations for the new entrants
- Covers Market data for the years 2022, 2023, 2024, 2026, and 2030
- Market Trends (Drivers, Constraints, Opportunities, Threats, Challenges, Investment Opportunities, and recommendations)
- Strategic recommendations in key business segments based on the market estimations
- Competitive landscaping mapping the key common trends
- Company profiling with detailed strategies, financials, and recent developments
- Supply chain trends mapping the latest technological advancements
1 Executive Summary
2 Preface
2.1 Abstract
2.2 Stake Holders
2.3 Research Scope
2.4 Research Methodology
2.4.1 Data Mining
2.4.2 Data Analysis
2.4.3 Data Validation
2.4.4 Research Approach
2.5 Research Sources
2.5.1 Primary Research Sources
2.5.2 Secondary Research Sources
2.5.3 Assumptions
3 Market Trend Analysis
3.1 Introduction
3.2 Drivers
3.3 Restraints
3.4 Opportunities
3.5 Threats
3.6 Product Analysis
3.7 Technology Analysis
3.8 Application Analysis
3.9 Emerging Markets
3.10 Impact of Covid-19
4 Porters Five Force Analysis
4.1 Bargaining power of suppliers
4.2 Bargaining power of buyers
4.3 Threat of substitutes
4.4 Threat of new entrants
4.5 Competitive rivalry
5 Global Advanced Carbon Materials Market, By Product Type
5.1 Introduction
5.2 Carbon Fibers
5.3 Special Graphite
5.4 Carbon Nanotubes
5.5 Graphene
5.6 Carbon Foams
5.7 Other Product Types
6 Global Advanced Carbon Materials Market, By Technology
6.1 Introduction
6.2 Arc Discharge
6.3 Laser Ablation
6.4 Chemical Vapor Deposition
6.5 Catalyzed Chemical Vapor Deposition
6.6 High-pressure Carbon Monoxide Reaction
6.7 Liquid Phase Carbon Nanotubes Purification
6.8 Other Technologies
7 Global Advanced Carbon Materials Market, By Application
7.1 Introduction
7.2 Aerospace and Defence
7.3 Electronics
7.4 Sports
7.5 Automotive
7.6 Construction
7.7 Metallurgy
7.8 Healthcare
7.9 Energy
7.10 Other Applications
8 Global Advanced Carbon Materials Market, By Geography
8.1 Introduction
8.2 North America
8.2.1 US
8.2.2 Canada
8.2.3 Mexico
8.3 Europe
8.3.1 Germany
8.3.2 UK
8.3.3 Italy
8.3.4 France
8.3.5 Spain
8.3.6 Rest of Europe
8.4 Asia Pacific
8.4.1 Japan
8.4.2 China
8.4.3 India
8.4.4 Australia
8.4.5 New Zealand
8.4.6 South Korea
8.4.7 Rest of Asia Pacific
8.5 South America
8.5.1 Argentina
8.5.2 Brazil
8.5.3 Chile
8.5.4 Rest of South America
8.6 Middle East & Africa
8.6.1 Saudi Arabia
8.6.2 UAE
8.6.3 Qatar
8.6.4 South Africa
8.6.5 Rest of Middle East & Africa
9 Key Developments
9.1 Agreements, Partnerships, Collaborations and Joint Ventures
9.2 Acquisitions & Mergers
9.3 New Product Launch
9.4 Expansions
9.5 Other Key Strategies
10 Company Profiling
10.1 Toray Industries
10.2 Solvay
10.3 Mitsubishi Chemical Carbon Fiber and Composites, Inc.
10.4 Teijin Limited
10.5 Showa Denko K.K.
10.6 Zoltek
10.7 Arkema S.A.
10.8 Hanwha Chemical
10.9 Nippon Graphite Fiber Corporation
10.10 Hexcel Corporation
10.11 Jiangsu Cnano Technology Co., Ltd.
10.12 Graphenea, Inc.
10.13 Toho Tenax Co. Ltd.
10.14 XG Sciences, Inc.
10.15 Graphite India Limited
List of Tables
1 Global Advanced Carbon Materials Market Outlook, By Region (2022-2030) ($MN)
2 Global Advanced Carbon Materials Market Outlook, By Product Type (2022-2030) ($MN)
3 Global Advanced Carbon Materials Market Outlook, By Carbon Fibers (2022-2030) ($MN)
4 Global Advanced Carbon Materials Market Outlook, By Special Graphite (2022-2030) ($MN)
5 Global Advanced Carbon Materials Market Outlook, By Carbon Nanotubes (2022-2030) ($MN)
6 Global Advanced Carbon Materials Market Outlook, By Graphene (2022-2030) ($MN)
7 Global Advanced Carbon Materials Market Outlook, By Carbon Foams (2022-2030) ($MN)
8 Global Advanced Carbon Materials Market Outlook, By Other Product Types (2022-2030) ($MN)
9 Global Advanced Carbon Materials Market Outlook, By Technology (2022-2030) ($MN)
10 Global Advanced Carbon Materials Market Outlook, By Arc Discharge (2022-2030) ($MN)
11 Global Advanced Carbon Materials Market Outlook, By Laser Ablation (2022-2030) ($MN)
12 Global Advanced Carbon Materials Market Outlook, By Chemical Vapor Deposition (2022-2030) ($MN)
13 Global Advanced Carbon Materials Market Outlook, By Catalyzed Chemical Vapor Deposition (2022-2030) ($MN)
14 Global Advanced Carbon Materials Market Outlook, By High-pressure Carbon Monoxide Reaction (2022-2030) ($MN)
15 Global Advanced Carbon Materials Market Outlook, By Liquid Phase Carbon Nanotubes Purification (2022-2030) ($MN)
16 Global Advanced Carbon Materials Market Outlook, By Other Technologies (2022-2030) ($MN)
17 Global Advanced Carbon Materials Market Outlook, By Application (2022-2030) ($MN)
18 Global Advanced Carbon Materials Market Outlook, By Aerospace and Defence (2022-2030) ($MN)
19 Global Advanced Carbon Materials Market Outlook, By Electronics (2022-2030) ($MN)
20 Global Advanced Carbon Materials Market Outlook, By Sports (2022-2030) ($MN)
21 Global Advanced Carbon Materials Market Outlook, By Automotive (2022-2030) ($MN)
22 Global Advanced Carbon Materials Market Outlook, By Construction (2022-2030) ($MN)
23 Global Advanced Carbon Materials Market Outlook, By Metallurgy (2022-2030) ($MN)
24 Global Advanced Carbon Materials Market Outlook, By Healthcare (2022-2030) ($MN)
25 Global Advanced Carbon Materials Market Outlook, By Energy (2022-2030) ($MN)
26 Global Advanced Carbon Materials Market Outlook, By Other Applications (2022-2030) ($MN)
Note: Tables for North America, Europe, APAC, South America, and Middle East & Africa Regions are also represented in the same manner as above.