市场调查报告书
商品编码
1519707
2024-2032 年按产品、方法、应用和地区分類的碳奈米管市场报告Carbon Nanotubes Market Report by Product, Method, Application, and Region 2024-2032 |
2023年全球奈米碳管市场规模达57IMARC Group美元。电子设备中碳奈米管对导电添加剂的需求不断增长,航空航太和汽车工业先进材料中产品应用的不断增长,以及对用于能源储存和环境修復的可持续奈米材料解决方案的兴趣日益浓厚,主要推动了市场的成长。
主要市场驱动因素:航空航太业的显着成长以及多壁奈米碳管在阴极射线照明元件和晶圆加工中的广泛采用是市场成长的主要推动力。
主要市场趋势:用于疾病治疗和健康监测的药物输送和生物感测系统生产的产品需求不断增加,对市场成长产生了积极影响。
竞争格局:奈米碳管市场的一些领先公司包括阿科玛公司、卡博特公司、Carbon Solutions Inc.、Cheap Tubes Inc.、江苏中纳科技有限公司、锦湖石化有限公司、LG化学有限公司( LG Corporation) )、Nanocyl SA、OCSiAl、Ossila Ltd.、Raymor Industries Inc. 和 Showa Denko KK 等。
地理趋势:根据报告,亚太地区目前在全球市场中占据主导地位。中国是亚太地区最大的碳奈米材料生产国和消费国。丰富的可用原材料和低廉的生产成本支持了该国碳奈米材料市场的成长。此外,碳奈米管在扩大该地区电子工业方面的广泛应用正在为整体市场创造积极的前景。
挑战与机会:碳奈米管市场面临生产成本高、可扩展性问题以及对环境和健康影响的担忧等挑战。然而,随着研究的不断进步、各行业应用的不断扩大,以及电子、航空航太和能源储存等领域对轻质高性能材料的需求不断增加,机会也随之而来。
增加汽车和电子产品应用
碳奈米管 (CNT) 因其卓越的机械性能、轻质特性和导电性而在汽车应用中得到广泛应用。此外,轻型汽车需求的不断增长也刺激了碳奈米管市场的发展。碳奈米管可以纳入用于车辆部件(例如车身面板、底盘部件和内饰部件)的复合材料中,从而减轻整体重量,同时保持强度和耐用性。例如,2023年8月,由克莱姆森大学领导的研究团队与NETL合作并在本田的支持下,利用碳纤维、热塑性树脂和先进的电脑设计开发了一种轻型车门。该门比传统钢门轻 32%,成功满足联邦安全标准和本田的特定安全要求。除此之外,碳奈米管 (CNT) 因其优异的导电性和透明度而广泛应用于电子领域,用于製造触控萤幕、柔性显示器和印刷电子产品中使用的导电薄膜。此外,对智慧型手机、电视、笔记型电脑、平板电脑等电子产品的需求不断增长,也推动了碳奈米管的市场份额。例如,2024年,全球消费性电子市场产生的收入达到惊人的10,460亿美元。
能源产业不断增长的产品需求
碳奈米管(CNT)由于其高表面积和导电性,作为能源应用(主要是太阳能电池、燃料电池催化剂和储氢)的催化剂载体而受到广泛关注。与此相适应,各国越来越多地投资再生能源技术,以扩大再生能源发电能力,这对碳奈米管市场前景产生了积极影响。例如,儘管风能和太阳能光电补贴已逐步取消,但中国仍计划在 2022 年至 2027 年期间安装全球新增再生能源发电容量的近一半。此外,中国「十四五」规划中雄心勃勃的可再生能源目标、市场改革以及省级政府的大力支持为再生能源提供了长期收入确定性。同样,2022 年至 2027 年期间,欧洲再生能源产能扩张的步伐预计将翻倍。在美国,IRA 于 2022 年 8 月获得通过,将再生能源税收抵免期限延长至 2032 年,为风能和太阳能光伏项目提供了前所未有的长期可见性。在印度,新安装量也将增加一倍。这是由太阳能光电引领的,并受到竞争性拍卖的推动,以实现政府在2030 年实现500 吉瓦再生能源发电量的雄心勃勃的目标。在未来几年推动碳奈米管市场收入。
扩大航太工业
碳奈米管材料在屏蔽电磁干扰 (EMI) 方面非常有效,这对于保护飞机上敏感电子系统免受外部电磁辐射至关重要。除此之外,碳奈米管还可以增强航空航天应用中使用的复合材料,增强其机械性能,如刚度、强度和耐用性,同时保持轻质外形。此外,不断扩大的航空航太业和全球航空航太设施数量的增加也增加了碳奈米管的市场需求。例如,2024 年 3 月,以色列航太工业公司 (IAI) 宣布将在印度建立一家新的航空航天国防公司,名为印度航太服务公司 (ASI)。 IAI表示,ASI的成立表明该组织与印度政府促进国家独立的计划之间的合作达到了新的水平。此外,各国政府当局正在采取措施并提供资金来增强国防能力,这进一步促进了市场的成长。例如,2024 年 3 月,印度政府启动了 iDEX 创新技术加速开发 (ADITI) 计画。该计划旨在透过向符合条件的新创公司提供高达 2.5 亿卢比的拨款,用于国防技术的研究、开发和创新活动,促进关键和战略国防技术的创新。
IMARC Group提供了全球碳奈米管市场报告每个细分市场的主要趋势分析,以及 2024 年至 2032 年全球、区域和国家层面的预测。我们的报告根据产品、方法和应用对市场进行了分类。
多壁碳奈米管 (MWCNT)
单壁碳奈米管 (SWCNT)
多壁碳奈米管(MWCNT)占据大部分市场份额
该报告根据产品提供了详细的市场细分和分析。这包括多壁碳奈米管(MWCNT)和单壁碳奈米管(SWCNT)。根据碳奈米管市场研究报告,多壁碳奈米管(MWCNT)占据了大部分市场份额。
多壁奈米碳管(MWCNT)由捲起形成管状结构的多个同心石墨烯层组成。它们独特的结构赋予了卓越的机械强度、导电性和热性能。多壁奈米碳管由于其多功能性和性能特点,在航空航太、电子、材料科学和生物技术等领域有着广泛的应用。此外,IMARC的碳奈米管市场统计数据表明,不断扩大的汽车、电子和航空航太工业正在支持多壁奈米碳管市场。例如,2023年1月,MG汽车印度公司宣布投资1亿美元扩大产能。同样,2022 年 12 月,Mahindra & Mahindra 透露计划投资 1,000 亿卢比(12 亿美元)在印度浦那建造电动车製造工厂。这项投资强调了电动车产业日益增长的重要性。此外,与单壁碳奈米管 (SWCNT) 相比,MWCNT 通常表现出更高的拉伸强度和热稳定性,使其适合需要坚固材料的严苛应用。它们的多层结构可实现客製化的特性和功能,为工程新型奈米材料解决方案提供多功能性。因此,预计它们的日益普及将在未来几年推动碳奈米管市场的近期价格。
化学气相沉积 (CVD)
催化化学气相沉积 (CCVD)
高压一氧化碳反应
其他的
化学气相沉积(CVD)方法目前在市场上表现出明显的主导地位
该报告根据方法对市场进行了详细的细分和分析。这包括化学气相沉积 (CVD)、催化化学气相沉积 (CCVD)、高压一氧化碳反应等。根据碳奈米管市场报告,化学气相沉积(CVD)方法目前在市场上表现出明显的主导地位。
化学气相沉积(CVD)是一种透过在高温下将含碳气体引入反应室来合成碳奈米管(CNT)的方法。气体分解,碳原子沉淀到基底上,形成奈米管。 CVD 可控制 CNT 特性,例如直径、长度和排列,使其成为奈米材料合成中通用且广泛使用的技术。
聚合物
电气和电子
活力
其他的
聚合物占据最大的市场份额
该报告根据应用提供了详细的市场细分和分析。这包括聚合物、电气和电子、能源等。报告称,聚合物占据最大的市场份额。
碳奈米管(CNT)用于聚合物中以增强其机械、电和热性能。它们充当增强剂,提高聚合物复合材料的强度、刚度和韧性。此外,碳奈米管可以赋予聚合物导电性,从而能够开发用于柔性电子产品和电磁干扰屏蔽等应用的导电塑胶。它们的高导热性使其适合在散热材料和阻燃剂等应用中增强聚合物的热性能。
北美洲
美国
加拿大
亚太
中国
日本
印度
韩国
澳洲
印尼
其他的
欧洲
德国
法国
英国
义大利
西班牙
俄罗斯
其他的
拉丁美洲
巴西
墨西哥
其他的
中东和非洲
亚太地区目前主导全球市场
该报告还对所有主要区域市场进行了全面分析,其中包括北美(美国和加拿大);亚太地区(中国、日本、印度、韩国、澳洲、印尼等);欧洲(德国、法国、英国、义大利、西班牙、俄罗斯等);拉丁美洲(巴西、墨西哥等);以及中东和非洲。报告称,亚太地区目前在全球市场占据主导地位。
IMARC的碳奈米管市场概况表明,中国是亚太地区最大的碳奈米材料生产国和消费国。丰富的可用原材料和低廉的生产成本支持了该国碳奈米材料市场的成长。此外,奈米碳管在中国和印度等亚太地区国家电子产业的广泛应用正在为整个市场创造积极的前景。例如,印度政府正在与知名半导体公司洽谈建立本地製造工厂。印度政府根据“印度修改半导体计划”,从 2023 年 6 月起邀请新的申请在印度设立半导体工厂和显示器工厂,投资额为 7,600 亿印度卢比。同样,根据日本汽车製造商协会 (JAMA) 的一份报告,该国 2022 年生产了 7,427,179 辆乘用车和 1,286,414 辆卡车。
The global carbon nanotubes market size reached US$ 5.7 Billion in 2023. Looking forward, IMARC Group expects the market to reach US$ 22.3 Billion by 2032, exhibiting a growth rate (CAGR) of 16.1% during 2024-2032. The increasing demand of carbon nanotubes for conductive additives in electronic devices, growing product applications in advanced materials for aerospace and automotive industries, and rising interest in sustainable nanomaterial solutions for energy storage and environmental remediation, are primarily driving the market growth.
Major Market Drivers: Significant growth in the aerospace industry and the widespread adoption of multi-walled carbon nanotubes for cathode-ray lighting elements and wafer processing are primarily driving the growth of the market.
Key Market Trends: The increasing product demand for the production of drug delivery and biosensing systems that are utilized for the treatment of diseases and monitoring health is positively impacting the market growth.
Competitive Landscape: Some of the leading carbon nanotubes market companies are Arkema S.A, Cabot Corporation, Carbon Solutions Inc., Cheap Tubes Inc., Jiangsu Cnano Technology Co. Ltd., Kumho Petrochemical Co. Ltd., LG Chem Ltd. (LG Corporation), Nanocyl SA, OCSiAl, Ossila Ltd., Raymor Industries Inc., and Showa Denko K.K., among others.
Geographical Trends: According to the report, Asia-Pacific currently dominates the global market. China is the largest producer and consumer of carbon nanomaterials in Asia-Pacific. The abundance of available raw materials and the low cost of production supported the growth of the carbon nanomaterials market in the country. Moreover, the extensive application of CNT in expanding the electronics industry in the region is creating a positive outlook for the overall market.
Challenges and Opportunities: The carbon nanotubes market faces challenges such as high production costs, scalability issues, and concerns regarding environmental and health impacts. However, opportunities abound with ongoing research advancements, expanding applications in diverse industries, and increasing demand for lightweight, high-performance materials in areas like electronics, aerospace, and energy storage.
Increasing Product Application in Automotives and Electronics
Carbon nanotubes (CNTs) are finding extensive use in automotive applications due to their exceptional mechanical properties, lightweight nature, and electrical conductivity. Moreover, the escalating demand for lightweight vehicles is also catalyzing the market for CNTs. Carbon nanotubes can be incorporated into composites used for vehicle parts such as body panels, chassis components, and interior parts, reducing overall weight while maintaining strength and durability. For instance, in August 2023, a research team led by Clemson University, in collaboration with NETL and with support from Honda, developed a lightweight vehicle door using carbon fiber, thermoplastic resin, and advanced computer design. This door is 32% lighter than a conventional steel door and successfully meets federal safety standards and Honda's specific safety requirements. Besides this, carbon nanotubes (CNTs) are extensively being utilized in electronics for creating conductive films used in touchscreens, flexible displays, and printed electronics due to their excellent electrical conductivity and transparency. Additionally, the rising demand for electronic gadgets, such as smartphones, televisions, laptops, tablets, etc., is also propelling the carbon nanotubes market share. For instance, in 2024, the revenue generated in the consumer electronics market worldwide amounted to a staggering US$ 1,046.0 Billion.
Growing Product Demand in the Energy Sector
Carbon nanotubes (CNTs) are gaining much attention as catalyst support for energy applications, primarily solar cells, fuel cell catalysts, and hydrogen storage, owing to their high surface area and conductivity. In line with this, various countries are increasingly investing in renewable power technologies to expand renewable power capacities, which is positively impacting the carbon nanotubes market outlook. For instance, China is planning to install almost half of the new global renewable power capacity over 2022-2027, despite the phase-out of wind and solar PV subsidies. Moreover, China's ambitious renewable energy targets in the 14th Five-Year Plan, market reforms, and solid provincial government support provide long-term revenue certainty for renewables. Similarly, the pace of renewable capacity expansion in Europe is expected to be double during 2022-2027. In the United States, the IRA was passed in August 2022 and extended tax credits for renewables until 2032, providing unprecedented long-term visibility for wind and solar PV projects. In India, new installations are also set to double. This is led by solar PV and driven by competitive auctions implemented to achieve the government's ambitious target of 500 GW of renewable power by 2030. The increasing focus on integrating sustainable and renewable energy is anticipated to propel the carbon nanotubes market revenue in the coming years.
Expanding Aerospace Industry
CNT-based materials are highly effective at shielding against electromagnetic interference (EMI), which is crucial for protecting sensitive electronic systems onboard aircraft from external electromagnetic radiation. In addition to this, CNTs can reinforce composite materials used in aerospace applications, enhancing their mechanical properties such as stiffness, strength, and durability while maintaining a low-weight profile. Furthermore, the expanding aerospace industry and the increasing number of aerospace facilities across the globe are also augmenting carbon nanotubes market demand. For instance, in March 2024, Israel Aerospace Industries (IAI) announced that they would be establishing a new aerospace defense company in India, named Aerospace Service India (ASI). IAI said the establishment of ASI demonstrated new levels of collaboration between the group and the Indian government's plans to promote national independence. Moreover, the government authorities of various nations are taking initiatives and providing funds to bolster defense capabilities, which is further bolstering the market growth. For instance, in March 2024, the Indian government launched the Acing Development of Innovative Technologies with iDEX (ADITI) scheme. This scheme aims to promote innovation in critical and strategic defense technologies by providing grants of up to Rs 25 crore to eligible start-ups for research, development, and innovation endeavors in defense technology.
IMARC Group provides an analysis of the key trends in each sub-segment of the global carbon nanotubes market report, along with forecasts at the global, regional, and country levels from 2024-2032. Our report has categorized the market based on product, method, and application.
Multi Walled Carbon Nanotubes (MWCNT)
Single Walled Carbon Nanotubes (SWCNT)
Multi Walled Carbon Nanotubes (MWCNT) holds the majority of the total market share
The report has provided a detailed breakup and analysis of the market based on product. This includes Multi Walled Carbon Nanotubes (MWCNT) and Single Walled Carbon Nanotubes (SWCNT). According to the carbon nanotubes market research report, Multi Walled Carbon Nanotubes (MWCNT) holds the majority of the total market share.
Multi-walled carbon nanotubes (MWCNTs) consist of several concentric layers of graphene rolled up to form a tube-like structure. Their unique architecture imparts exceptional mechanical strength, electrical conductivity, and thermal properties. MWCNTs find diverse applications in fields such as aerospace, electronics, materials science, and biotechnology due to their versatility and performance characteristics. Moreover, carbon nanotubes market statistics by IMARC indicate that the expanding automotive, electronics, and aerospace industries are bolstering the market for multi-walled carbon nanotubes. For instance, in January 2023, MG Motor India announced a US$ 100 Million investment to expand capacity. Similarly, in December 2022, Mahindra & Mahindra revealed plans to invest INR 10,000 crore (US$ 1.2 Billion) in an EV manufacturing plant in Pune, India. This investment emphasizes the growing significance of the EV sector. Furthermore, compared to single-walled carbon nanotubes (SWCNTs), MWCNTs often exhibit higher tensile strength and thermal stability, making them suitable for demanding applications requiring robust materials. Their multi-layered structure allows for tailored properties and functionality, offering versatility in engineering novel nanomaterial-based solutions. As a result, their increasing adoption is anticipated to propel the carbon nanotubes market's recent price in the coming years.
Chemical Vapor Deposition (CVD)
Catalytic Chemical Vapor Deposition (CCVD)
High-Pressure Carbon Monoxide Reaction
Others
Chemical Vapor Deposition (CVD) method currently exhibits a clear dominance in the market
The report has provided a detailed breakup and analysis of the market based on method. This includes Chemical Vapor Deposition (CVD), Catalytic Chemical Vapor Deposition (CCVD), high-pressure carbon monoxide reaction, and others. According to the carbon nanotubes market report, Chemical Vapor Deposition (CVD) method currently exhibits a clear dominance in the market.
Chemical Vapor Deposition (CVD) is a method used to synthesize carbon nanotubes (CNTs) by introducing carbon-containing gases into a reaction chamber at high temperatures. The gases decompose, and carbon atoms precipitate onto a substrate, forming nanotubes. CVD offers control over CNT characteristics such as diameter, length, and alignment, making it a versatile and widely used technique in nanomaterials synthesis.
Polymers
Electrical and Electronics
Energy
Others
Polymers account for the largest market share
The report has provided a detailed breakup and analysis of the market based on application. This includes polymers, electrical and electronics, energy, and others. According to the report, polymers account for the largest market share.
Carbon nanotubes (CNTs) are utilized in polymers to enhance their mechanical, electrical, and thermal properties. They act as reinforcing agents, improving the strength, stiffness, and toughness of polymer composites. Additionally, CNTs can impart electrical conductivity to polymers, enabling the development of conductive plastics for applications such as flexible electronics and electromagnetic interference shielding. Their high thermal conductivity makes them suitable for enhancing the thermal properties of polymers in applications like heat dissipation materials and flame retardants.
North America
United States
Canada
Asia-Pacific
China
Japan
India
South Korea
Australia
Indonesia
Others
Europe
Germany
France
United Kingdom
Italy
Spain
Russia
Others
Latin America
Brazil
Mexico
Others
Middle East and Africa
Asia-Pacific currently dominates the global market
The report has also provided a comprehensive analysis of all the major regional markets, which include North America (the United States and Canada); Asia Pacific (China, Japan, India, South Korea, Australia, Indonesia, and others); Europe (Germany, France, the United Kingdom, Italy, Spain, Russia, and others); Latin America (Brazil, Mexico, and others); and the Middle East and Africa. According to the report, Asia-Pacific currently dominates the global market.
The carbon nanotubes market overview by IMARC indicates that China is the largest producer and consumer of carbon nanomaterials in Asia-Pacific. The abundance of available raw materials and the low cost of production supported the growth of the carbon nanomaterials market in the country. Moreover, the extensive application of CNT in expanding the electronics industry across APAC countries like China and India is creating a positive outlook for the overall market. For instance, the Indian government is talking with prominent semiconductor companies to set up local manufacturing units. The government invited new applications for setting up Semiconductor Fabs and Display Fabs in India from June 2023 under the Modified Semicon India Programme with an outlay of INR 76,000 crore. Similarly, according to a report by the Japan Automobile Manufacturers Association (JAMA), the country produced 7,427,179 units of passenger cars and 1,286,414 units of trucks in 2022. All these factors are anticipated to positively impact the CNT market over the coming years.
Arkema S.A
Cabot Corporation
Carbon Solutions Inc.
Cheap Tubes Inc.
Jiangsu Cnano Technology Co. Ltd.
Kumho Petrochemical Co. Ltd.
LG Chem Ltd. (LG Corporation)
Nanocyl SA
OCSiAl
Ossila Ltd.
Raymor Industries Inc.
Showa Denko K.K.
(Please note that this is only a partial list of the key players, and the complete list is provided in the report.)
March 2024: A research team at the University of Pittsburgh developed a portable sensor that relies on carbon nanotubes and gold nanoparticles to detect even small amounts of fentanyl. This sensor also tells the difference between fentanyl and other opioids.
February 2024: Researchers at Japan's Osaka University unveiled a flexible, ultrathin optical sensor that uses carbon nanotubes to convert light into electrical signals. The team says that the device could lead to better optical imaging technologies.
November 2023: Rice University was granted US$ 4.1 Million as a part of the journey towards sustainable materials research, to enhance carbon nanotube (CNT) synthesis, a critical component in the transition to green energy. This collaboration, jointly funded by The Kavli Foundation and Rice's Carbon Hub, aims to provide sustainable alternatives to materials heavily reliant on traditional industry.