市场调查报告书
商品编码
1451274
2024-2032 年按类型(单层和双层石墨烯、少层石墨烯、氧化石墨烯、石墨烯奈米片等)、应用、最终用途行业和地区分類的石墨烯市场报告Graphene Market Report by Type (Mono-layer & Bi-layer Graphene, Few Layer Graphene, Graphene Oxide, Graphene Nano Platelets, and Others), Application, End-Use Industry, and Region 2024-2032 |
2023年全球石墨烯市场规模达2亿美元。展望未来, IMARC Group预计到2032年市场规模将达到49亿美元,2024-2032年复合年增长率(CAGR)为41.1%。半导体生产的不断进步,各种生物医学应用的不断进步,以及对更强、更轻、更耐用的建筑材料的需求不断增加是推动市场的一些主要因素。
石墨烯是碳的二维同素异形体,包括放置在六方晶格中的单层碳原子。它具有增强的拉伸强度,允许电子几乎毫无阻力地流过它,使其成为有效的电导体。它有单层和多层石墨烯的形式,氧化石墨烯是石墨烯的衍生物,是透过氧化石墨烯、引入含氧官能基而产生的。它增加了储能容量,缩短了充电时间,并提高了储能设备的使用寿命。它可用于高速电晶体、柔性透明显示器,甚至量子运算。
目前,下一代电子产品製造对石墨烯的需求不断增加,正在推动市场的成长。除此之外,石墨烯基材料在电池和超级电容器中的使用不断增加,因为它们增加了储能容量、缩短了充电时间并延长了储能设备的使用寿命,这也促进了市场的成长。此外,净水器中越来越多地使用石墨烯基材料来有效过滤污染物并为水净化提供可持续的解决方案,这提供了良好的市场前景。除此之外,石墨烯作为复合材料中的增强材料越来越受欢迎,以提高其机械强度,同时保持轻质,这支持了市场的成长。此外,化学气相沉积(CVD)、液相剥离和其他石墨烯生产技术的不断进步正在推动市场的成长。
半导体生产不断进步
半导体生产的不断进步目前对石墨烯市场的成长产生了重大而积极的影响。除此之外,半导体製造流程的不断创新正在导致更小、更有效率的电子元件的开发。石墨烯由于其卓越的导电性和散热特性,正在成为增强这些先进半导体性能的关键材料。随着製造商不断寻求使电子产品更快、更节能的方法,对石墨烯的需求不断增加。此外,石墨烯不断整合到半导体製造流程中,正在促进其在各种电子应用中的采用。研究人员和工程师正在探索将石墨烯融入电晶体、互连和其他半导体元件的新方法,从而提高其整体性能。这种整合正在提振半导体产业对石墨烯的需求。
生物医学应用不断进步
目前,生物医学应用的不断进步正在推动医疗领域对石墨烯的需求。研究人员和医疗保健专业人员正在积极采用基于石墨烯的生物感测器来检测生物标记、病原体和各种与健康相关的指标,其灵敏度和精确度无与伦比。石墨烯与生物感测技术的不断整合正在推动石墨烯市场的扩张。石墨烯基材料用于伤口敷料和癒合应用,因为它们具有抗菌特性,并且可以透过维持无菌环境和促进组织再生来帮助加速伤口癒合过程。此外,随着石墨烯广泛用于製造血糖监测仪,生物医学领域的需求也不断增加。
对更强、更轻、更耐用的建筑材料的需求不断增长
目前对更强、更轻、更耐用的建筑材料的需求不断增长,正在推动石墨烯市场的成长。随着建筑项目变得越来越雄心勃勃和复杂,对创新解决方案的追求也不断加强。石墨烯是一种由碳原子排列成六方晶格的二维材料,具有无与伦比的强度和重量,使其成为增强建筑材料耐用性和性能的理想选择。将其融入混凝土、复合材料和涂料等各种建筑构件中,对于加固基础设施项目并延长其使用寿命至关重要。此外,随着世界寻求环保替代品,石墨烯透过开发更持久的结构来减少碳足迹的潜力正在成为一种有吸引力的选择。
The global graphene market size reached US$ 200 Million in 2023. Looking forward, IMARC Group expects the market to reach US$ 4,900 Million by 2032, exhibiting a growth rate (CAGR) of 41.1% during 2024-2032. The growing advancements in the production of semiconductors, rising improvements in various biomedical applications, and increasing demand for stronger, lighter, and more durable construction materials are some of the major factors propelling the market.
Graphene is a two-dimensional allotrope of carbon, including a mono-layer of carbon atoms placed in a hexagonal lattice. It possesses enhanced tensile strength and allows electrons to flow through it nearly without resistance, making it an efficient conductor of electricity. It is available as single-layer and multi-layer graphene, and graphene oxide, which is a derivative of graphene, is created by oxidizing graphene, introducing oxygen-containing functional groups. It increases energy storage capacity, shortens charging times, and enhances the lifespan of energy storage devices. It can be used in high-speed transistors, flexible and transparent displays, and even quantum computing.
At present, the increasing demand for graphene for the manufacturing of next-generation electronics is impelling the growth of the market. Besides this, the rising employment of graphene-based materials in batteries and supercapacitors, as they increase energy storage capacity, shorten charging times, and enhance the lifespan of energy storage devices, is contributing to the growth of the market. In addition, the growing utilization of graphene-based materials in water purifiers for effectively filtering out contaminants and providing a sustainable solution for water purification is offering a favorable market outlook. Apart from this, the increasing popularity of graphene as a reinforcement material in composites to improve their mechanical strength while keeping them lightweight is supporting the growth of the market. Additionally, rising improvements in chemical vapor deposition (CVD), liquid-phase exfoliation, and other production techniques of graphene are bolstering the growth of the market.
Growing advancements in the production of semiconductors
The growing advancements in the production of semiconductors are currently exerting a significant and positive influence on the growth of the graphene market. Besides this, the rising innovations in semiconductor fabrication processes are leading to the development of smaller and more efficient electronic components. Graphene, due to its exceptional electrical conductivity and heat dissipation properties, is emerging as a crucial material for enhancing the performance of these advanced semiconductors. As manufacturers continue to seek ways to make electronics faster and more energy-efficient, the demand for graphene is increasing. Moreover, the continuous integration of graphene into semiconductor manufacturing processes is bolstering its adoption in various electronic applications. Researchers and engineers are exploring novel methods to incorporate graphene into transistors, interconnects, and other semiconductor components, thereby improving their overall performance. This integration is bolstering the demand for graphene in the semiconductor industry.
Rising improvements in biomedical applications
At present, the rising advancements in biomedical applications are propelling the demand for graphene in the medical sector. Researchers and healthcare professionals are actively employing graphene-based biosensors to detect biomarkers, pathogens, and various health-related indicators with unparalleled sensitivity and precision. This continuous integration of graphene into biosensing technologies is fueling the expansion of the graphene market. Graphene-based materials are employed for wound dressings and healing applications as they exhibit antimicrobial properties and can help fasten the wound healing process by maintaining a sterile environment and promoting tissue regeneration. Furthermore, as graphene is widely utilized for the manufacturing of glucose monitors, their demand is rising in the biomedical sector.
Increasing demand for stronger, lighter, and more durable construction materials
The increasing demand for stronger, lighter, and more durable construction materials is currently bolstering the growth of the graphene market. As construction projects are becoming more ambitious and complex, the quest for innovative solutions is intensifying. Graphene, being a two-dimensional material composed of carbon atoms arranged in a hexagonal lattice, exhibits unparalleled strength and lightness, making it an ideal candidate for enhancing the durability and performance of construction materials. Its incorporation into various building components, such as concrete, composites, and coatings, is essential to reinforce infrastructure projects and extend their lifespan. Moreover, as the world seeks eco-friendly alternatives, the potential of graphene to reduce the carbon footprint through the development of longer-lasting structures is emerging as an appealing option.
IMARC Group provides an analysis of the key trends in each segment of the global graphene market report, along with forecasts at the global, regional, and country levels for 2024-2032. Our report has categorized the market based on type, application, and end-use industry.
Mono-layer & Bi-layer Graphene
Few Layer Graphene (FLG)
Graphene Oxide (GO)
Graphene Nano Platelets (GNP)
Others
Graphene nano platelets (GNP) dominate the market
The report has provided a detailed breakup and analysis of the market based on the type. This includes mono-layer and bi-layer graphene, few layer graphene (FLG), graphene oxide (GO), graphene nano platelets (GNP), and others. According to the report, graphene nano platelets (GNP) represented the largest segment.
Graphene nano platelets (GNPs) are a type of nanomaterial that consists of stacks of graphene sheets. They typically consist of 2 to 10 layers of graphene sheets placed on top of each other. They are considered to be a type of graphene-based nanoplatelet. They inherit many of the extraordinary properties of graphene, such as exceptional electrical conductivity, high thermal conductivity, mechanical strength, and flexibility. They are used as conductive additives in various applications, such as batteries, supercapacitors, and printed electronics, to enhance electrical conductivity and mechanical properties. They are incorporated into composite materials, like polymer composites and coatings, to improve mechanical strength, thermal conductivity, and electromagnetic shielding properties.
Batteries
Supercapacitors
Transparent Electrodes
Integrated Circuits
Others
Batteries hold the largest share in the market
A detailed breakup and analysis of the market based on the application have also been provided in the report. This includes batteries, supercapacitors, transparent electrodes, integrated circuits, and others. According to the report, batteries accounted for the largest market share.
Graphene can be used as an anode material in lithium-ion batteries. Its high electrical conductivity and large surface area enhance the capacity and charge-discharge efficiency of batteries. Graphene-based anodes also exhibit better cycling stability, which means they can maintain their performance over more charge-discharge cycles. Graphene oxide and reduced graphene oxide are adopted as components of battery separators. These materials can enhance the thermal and mechanical stability of the separator while maintaining good ionic conductivity. This also improves the safety and overall performance of the battery. The lightweight nature of graphene makes it ideal for flexible and wearable battery applications. It can be integrated into clothing, sensors, or other devices where traditional bulky batteries may not be suitable.
Electronics and Telecommunication
Bio-medical and Healthcare
Energy
Aerospace and Defense
Others
Electronics and telecommunication hold the biggest share in the market
A detailed breakup and analysis of the market based on the end-use industry has also been provided in the report. This includes electronics and telecommunication, bio-medical and healthcare, energy, aerospace and defense, and others. According to the report, electronics and telecommunication accounted for the largest market share.
The electronics and telecommunication sector uses graphene for manufacturing flexible and bendable electronic components. This is particularly useful for applications like flexible displays, wearable electronics, and flexible sensors, where traditional materials would be less suitable. Graphene-based sensors are highly sensitive to a wide range of signals, including temperature, pressure, gas molecules, and even single molecules. These sensors find applications in various fields, including telecommunications, where they can be used for signal detection and analysis. Graphene antennas can be used to enhance the performance of wireless communication devices. They can function over a wide array of frequencies and offer improved radiation efficiency.
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 exhibits a clear dominance, accounting for the largest graphene market share
The market research 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 accounted for the largest market share.
Asia Pacific held the biggest market share due to the increasing focus on developing efficient semiconductor materials. Besides this, the rising demand for more efficient and longer-lasting energy storage solutions is contributing to the growth of the market. Apart from this, the increasing investment in improving healthcare facilities, along with the development of drug delivery, tissue engineering, and diagnostic devices, is supporting the growth of the market.
North America is estimated to expand further in this domain due to the rising focus on conducting efficient pollution control and sensing. Moreover, the increasing purchase of electric vehicles (EVs) as a sustainable alternative to fuel-run cars is bolstering the growth of the market.
Key market players are investing to expand the range of applications for graphene, which includes developing new manufacturing techniques, improving the quality of graphene products, and discovering novel uses for graphene in various industries. They are also diversifying their product portfolios to include a wider range of graphene-based materials and products. Top companies are forming strategic partnerships and collaborations with other organizations, including universities, research institutions, and other industry players. They are also working on scaling up their production processes through the development of large-scale production facilities and the optimization of manufacturing techniques. Leading companies are investing in quality control measures and participating in standardization efforts to build trust among customers.
ACS Material, LLC
Global Graphene Group, Inc.
CVD Equipment Corporation
Grafoid Inc.
G6 Materials Corp. (Graphene 3D Lab Inc.)
Graphene NanoChem PLC
Graphenea Inc.
Haydale Graphene Industries Plc
Vorbeck Materials Corp.
XG Sciences Inc.
In 2023, G6 Materials Corp. announced the launch of a new thermally conductive G6-EPOXY(R) product line to expand its reach into a new area of the epoxy market.
In 2020, Global Graphene Group announced the issuance of eight key patents for long-range lithium metal battery technology, which will provide electric vehicles (EVs) with an extended driving range on a single charge.
In 2023, Haydale Graphene Industries Plc announced its collaboration with PETRONAS to functionalize graphene for various product applications and accelerate the commercialization of graphene-based formulations in numerous industries.