Notice of Beijing Municipal Bureau of Economy and Information Technology on Issuing the Implementation Plan for the Development of Beijing's Graphene Industry (2024-2027)
Beijing Economic and Information Technology Bureau [2024] No. 63
To all relevant units:
In order to implement the "Beijing Implementation Plan for Promoting the Innovation and Development of Future Industries", seize the opportunities of a new round of scientific and technological revolution and industrial transformation, lead the national graphene technology innovation and industrial development, and accelerate the formation of new quality productivity in the future materials industry, the Beijing Municipal Bureau of Economy and Information Technology has taken the lead in formulating the "Beijing Graphene Industry Development Implementation Plan (2024-2027)", which is now issued. Please implement it in light of the actual situation.
This is to notify you.
Beijing Municipal Bureau of Economy and Information Technology
November 19, 2024
Beijing Graphene Industry Development Implementation Plan (2024-2027)
In order to implement the "Implementation Opinions on Promoting the Innovation and Development of Future Industries" and the "Beijing Implementation Plan for Promoting the Innovation and Development of Future Industries" issued by the Ministry of Industry and Information Technology and other seven departments, seize the opportunities of a new round of scientific and technological revolution and industrial transformation, lead the national graphene technology innovation and industrial development, and support the high-quality development of the capital, this plan is specially formulated.
1. General requirements
Leading industrial innovation with scientific and technological innovation, giving full play to Beijing's graphene innovation advantages, adhering to problem-oriented and demand-driven, focusing on improving the graphene innovation ecosystem, constantly stimulating the vitality of market entities, and making new breakthroughs in original innovation, industrial agglomeration, Beijing-Tianjin-Hebei coordination and international cooperation, achieving high-quality and stable production of general graphene materials and new graphene materials, promoting material standardization, serialization and low-cost, creating an independent, controllable, safe and reliable industrial chain and supply chain for the graphene industry, accelerating the large-scale application of graphene, cultivating and expanding leading enterprises in subdivided fields and specialized, special and new characteristic industrial clusters, and promoting Beijing's graphene industry to become a future industry with outstanding international competitive advantages.
——Adhere to innovation-driven and forward-looking layout. Aiming at the world's advanced level, accelerate the layout of cutting-edge technologies and key core technologies, and promote industrial innovation with scientific and technological innovation. Continuously optimize the innovation ecosystem and business model. Focus on breakthroughs in basic materials, core processes and high-end equipment technologies to achieve independent control of the entire graphene industry chain.
——Adhere to demand-driven and coordinated development. Focusing on the development needs of major national projects and Beijing's high-tech industries, we will promote the vertical extension of the graphene industry chain and promote "industry-university-research-application" cooperation. Deepen the coordinated development of Beijing, Tianjin and Hebei, and use the concept of Beijing as the main innovation, Beijing, Tianjin and Hebei as the main platform, and the national large network to run through the entire process of graphene industry development.
——Adhere to market dominance and policy guidance. Strengthen the role of enterprises as the main body of innovation, give play to the decisive role of the market in resource allocation, and stimulate the vitality of market entities. Improve the policy system, enhance corporate services, create a good development environment, and accelerate the transformation of graphene scientific and technological achievements.
——Adhere to green and low-carbon, international cooperation. Coordinate industrial development, environmental friendliness and safety, develop clean production technology for graphene materials, and promote green and low-carbon development of the entire industry chain of graphene preparation and application. Strengthen international exchanges and cooperation, support the construction of industry organizations and forum brands with international influence in the field of graphene, and enhance the international influence of Beijing's graphene industry.
2. Main Goals
By 2025, Beijing's graphene innovation capability will be significantly enhanced, with breakthroughs in 5 to 10 key common technologies, and no less than 10 typical products will be developed for the fields of aerospace, new energy, and artificial intelligence, forming more than 30 high-quality patents and 10 standards, introducing and cultivating more than 5 leading enterprises in subdivided fields, and graphene and related products will form an industrial scale of 5 billion.
By 2027, an industrial system with a benign interaction between graphene common technology breakthroughs and leading industry cultivation will be basically formed, with a total of more than 50 high-quality patents, further improvement of the industrial standard system, and significant improvement of the industrial level. Introduce and cultivate more than 20 leading enterprises in subdivided fields, more than 2 listed companies, build 2 characteristic industrial clusters, and graphene and related products will form an industrial scale of 10 billion. At the end of the 15th Five-Year Plan, graphene and related products will form an industrial scale of 30 billion.
--Innovation capability will be significantly improved. According to the principle of "sequential deployment and rolling implementation", a roadmap for graphene technology research and development and industrialization will be laid out. For the next generation of semiconductors, new generation information and communications, biomedicine and other industries, a number of cutting-edge technologies such as single crystal graphene wafers and graphene biochips are reserved. For hydrogen energy, artificial intelligence perception, large-scale integrated circuits and other fields, a number of key technologies such as graphene smart sensors, graphene catalysts, and graphene CMP consumables are deployed. For new energy vehicles, aerospace, wind power generation, high-end equipment and other directions, breakthroughs are made in mass production technologies such as graphene composite materials represented by monene materials and monene alloys, graphene flexible heating materials, and graphene modified lubricating materials. Simultaneously carry out the research and development and manufacturing of graphene powder and film equipment to provide support for cost reduction and efficiency improvement and market development of high-quality graphene materials.
——The synergy capacity of the industrial chain has been greatly improved. Based on the existing foundation and regional characteristics of the Beijing-Tianjin-Hebei graphene industry, the division of labor and cooperation in Haidian District, Fangshan District, and Huairou District will be strengthened. Haidian District focuses on innovation leadership in graphene concept verification, product design, pilot verification, special applications, etc. Fangshan District focuses on the cultivation of graphene powder preparation and application industry clusters, and Huairou District focuses on graphene film preparation, application and equipment instrument manufacturing to build the "graphene triangle" for the development of Beijing's graphene industry. Join hands with Hebei and Tianjin to jointly build the "Beijing-Tianjin-Hebei Carbon Valley". Beijing will strengthen the innovation leadership of graphene, empower the carbon material industry in Beijing-Tianjin-Hebei with science and technology, promote the construction of Hebei based on industrial parks, and land the production and application industry clusters of advanced carbon materials such as graphene powder and graphene-reinforced carbon fiber, and support Tianjin to focus on the layout of graphene composite materials and equipment manufacturing. The three places will form a new industrial development pattern with complementary advantages, staggered development, and mutual benefit and win-win.
III. Key tasks
(I) Key technology innovation projects
Focusing on the needs of aerospace, high-end equipment, new energy, artificial intelligence, electronic information and biomedicine industries, give full play to the basic and cutting-edge material characteristics of graphene, and enhance the key technology innovation capabilities of graphene core products.
1. General graphene materials
Support the development of low-cost mass production technology for meter-level general graphene films and single-crystal graphene wafers, and realize the mass production of large-width graphene film rolls, high-quality graphene film sheets and application-level single-crystal graphene wafers.
2. New graphene materials
Encourage the acceleration of research on the design and manufacturing technology of super monene materials, explore new growth carriers, composite methods and assembly methods of graphene materials, develop preparation methods for monene metals and monene non-metallic materials, and develop large-scale processes and equipment for monene materials in different forms such as powders, fibers and blocks; develop high-strength and high-toughness, high-strength and high-shear series of graphene carbon/aramid III composite fibers and wet-process monene aramid fibers with adjustable electrical properties in response to major national strategic needs.
3. Advanced graphene application technology
Aiming at the needs of industries such as hydrogen energy, artificial intelligence, energy storage batteries, and scientific instruments, support the acceleration of breakthroughs in key common technologies such as graphene metal interface control technology, self-assembled graphene three-dimensional morphology control technology, graphene nanostructure manufacturing technology, high-quality graphene preparation and composite transfer technology, and develop high-efficiency and low-cost catalysts, ultra-high thermal conductivity graphene metal temperature balancing plates, low-cost and high-sensitivity flexible graphene film sensors, graphene composite micro-shaped current collectors, and high-performance graphene separation membranes.
4. Graphene equipment and testing instrument manufacturing technology
Encourage breakthroughs in key equipment manufacturing technologies such as large-scale roll-to-roll continuous preparation equipment, application-level single crystal graphene wafer preparation equipment, graphene film automated peeling and transfer equipment, and graphene film automated testing equipment for the needs of large-scale preparation of high-quality and general graphene films.
Column 1 Graphene advanced application technology and products
1. Graphene catalyst: specific activity> 0.3A/mg(Pt), electrochemical active area> 105m2/g(Pt).
2. Graphene temperature plate: thickness> 3mm, thermal conductivity> 800W·m/K.
3. Graphene sensor: low-cost flexible sensor of graphene powder with sensing range of 0.03~30kg/cm2, response time≤50ms, stability> 100,000 times; high-sensitivity wide-temperature range sensor of graphene film with operating temperature of -100℃~600℃, fitting slope≥0.02, nonlinear error≤10%, and maximum hysteresis≤8%.
4. Graphene biodetector: Breakthrough in the manufacturing technology of graphene nanostructure with band width<10nm, and develop a mass-producible graphene biodetector with concentration measurement limit≤1.5pM and average detection time<15min.
5. Graphene current collector: Breakthrough in the manufacturing of metal thin surface film microstructure and graphene in-situ growth technology, the surface Ra reaches 0.4~1.3μm, and the cycle life of sodium battery under 1C charge and discharge conditions exceeds 1500 weeks.
6. Graphene electron microscope support film: Breakthrough in the manufacturing technology of graphene complete film, water vapor permeability <10-6g·(m2·d)-1, oxygen permeability <10-5cm3·(m2·d)-1, obtain graphene electron microscope sample slide with adjustable hydrophilicity and hydrophobicity, and realize high-resolution cryo-electron microscope three-dimensional structure analysis of biological macromolecules with a resolution higher than 3?.
7. Graphene optical communication device: Breakthrough in the manufacturing technology of graphene photoelectric modulator, realize data transmission rate ≥50Gbit·s-1, electro-optical modulation efficiency >0.3V·cm, photoelectric detection device responsiveness ≥100mA·W-1.
(II) Full-scenario demonstration application project
Expand the application scenarios of graphene for national key engineering construction, industrial fields and people's livelihood fields. Focusing on the performance improvement of existing bulk products such as coatings, resins, rubbers, battery materials, wearable products, heating systems, etc., focus on cultivating and expanding the application scale of graphene products in the industrial and people's livelihood fields, and expand the demonstration scenarios of graphene in aerospace, artificial intelligence and scientific instruments.
1. Aerospace and special applications
Support the application technology research of monene materials, monene carbon fiber materials, monene alloy materials and other materials in the fields of aircraft, aerospace vehicles, equipment protection, etc., carry out application scenario verification of graphene glass fiber products, monene carbon aramid fiber, graphene temperature balancing board and other products, and promote the large-scale application of related products in aerospace and special application fields.
2. New energy vehicles and rail transit
Support the application technology research of graphene flexible heating materials, graphene resin composite materials, and graphene lubricating materials for new energy vehicles, subways, and high-speed railways, deepen the application scenario verification of graphene flexible heating device products, and promote the large-scale application of related products in the fields of new energy vehicles and rail transit.
3. Electronic information and artificial intelligence
Encourage the application research of graphene high-sensitivity sensors, graphene biochips, and graphene alloy materials in the fields of electronic information and artificial intelligence, carry out application scenario verification of products such as graphene CMP consumables, graphene flexible sensors, and graphene biochips, and promote the large-scale application of related products in the fields of integrated circuits and artificial intelligence.
4. New energy and energy conservation and environmental protection
Support the application research of high-efficiency graphene catalysts, graphene alloy materials, and graphene lubricating materials in the fields of new energy and energy conservation and environmental protection, carry out application scenario verification of products such as graphene current collectors, graphene hydrogen fuel cell catalysts, and graphene lubricants, and promote the large-scale application of related products in new energy and energy conservation and environmental protection fields such as hydrogen energy, lithium (sodium) ion batteries, and wind power generation.
5. High-end equipment and scientific instruments
Support the application research and product development of graphene functional membrane materials for high-end equipment and scientific instruments, carry out application scenario verification of graphene membrane products such as graphene electron microscope support membrane for transmission electron microscope, graphene biological separation membrane, graphene water and oxygen barrier membrane, and promote the large-scale application of related products in scientific instruments and other fields.
(III) Industrial cluster construction project
1. Graphene industry pilot and special application base
Support Haidian District to build a highland for the research and development of graphene cutting-edge technology and key common technology, and become a graphene science and technology innovation center with international influence. Facing the needs of special applications, build a graphene dual-use technology and product research and development and industrialization base; around the application needs of "artificial intelligence +", build a graphene intelligent perception innovation demonstration application.
2. Graphene powder preparation and application industry cluster
Support Fangshan District to build a graphene characteristic industry cluster, improve the level of small and medium-sized enterprise services and industrial chain investment promotion, and become the radiation center of the Beijing-Tianjin-Hebei graphene industry. Promote the construction of a number of key projects such as graphene lubricants, temperature equalizers, flexible heating components, current collectors, and wide-temperature range batteries, and accelerate the pilot verification and industrialization of products such as graphene CMP consumables, flexible sensors, biochips, and hydrogen catalysts.
Column 2 Fangshan Graphene Characteristic Industrial Cluster
In order to give full play to Beijing's graphene innovation advantages, Fangshan District used the existing land space of Zhongguancun Fangshan Park to support the construction of the first phase of the 15,600 square meter pilot incubation base, combined with the 78,000 square meters of new material industry standardized factory space under construction, to jointly promote the formation of a characteristic industrial cluster in Fangshan by the new material industry represented by graphene. Among them, the pilot incubation base is a multi-dimensional three-dimensional base integrating free physical space, equipment sharing, technical services, fund investment, and local policy support. At present, the base has incubated 2 enterprises above designated size, 1 national-level specialized and new "little giant" enterprise, and 2 municipal-level specialized and new enterprises in 3 years, and has initially established an industrial construction system with benign interaction between general common technology breakthroughs and leading industry incubation.
3. Graphene film preparation and equipment manufacturing base
Support Huairou District to build and deploy graphene high-end equipment research and development and manufacturing based on Huairou Science City, and create a graphene international cooperation community. Promote the implementation of a number of key projects such as the general graphene material preparation project, the batch preparation project of monene materials, and the graphene electron microscope grid project.
4. Beijing-Tianjin-Hebei advanced carbon material industry cluster
Relying on Beijing's advantages in the concentration of innovative resources, support Shijiazhuang and Langfang in Hebei to deploy key projects such as graphene powder, carbon fiber composite materials, and wires, support Baodi and Dongli in Tianjin to deploy key projects such as graphene lubricating materials, ceramic materials, and bulletproof armor materials, and the three places will jointly build the "Beijing-Tianjin-Hebei Carbon Valley" to create a new business card for Beijing-Tianjin-Hebei industrial collaboration with complementary advantages and regional win-win.
(IV) Public Service Platform Construction Project
1. Build an internationally advanced graphene innovation platform
Support Beijing's leading science and technology innovation institutions to take the lead in establishing a national innovation platform in the field of graphene, integrate innovation resources in the field of graphene in Beijing, and create a new graphene R&D institution with international influence.
2. Build a national industry pilot platform and inspection and testing center
Support institutions with outstanding pilot capabilities such as municipal manufacturing innovation centers to build a national pilot platform integrating pilot R&D, pilot manufacturing, and pilot verification around graphene downstream application scenarios, and promote the transformation of graphene scientific and technological achievements; support the construction of a national graphene industry inspection and testing center in Beijing to provide testing and certification services for graphene materials.
3. Support the development of industry organizations to enhance international influence
Encourage leaders in advanced carbon materials
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