In order to implement the "national long-term science and technology development plan (2006-2020)", "12th Five-Year" implementation of science and technology development planning, according to the general spirit of the reform of the management of State Science and technology plans to speed up the new materials, nurturing and development of strategic emerging industries, to meet the urgent needs of major national projects and the optimization and upgrading of traditional industries, give full play to the material the foundation and support role, effective organization and implementation of "12th Five-Year" materials of national science and technology plan, do 2013 year field material alternative project library construction work, formulated the guidelines.
First, the direction and content of the guide
1 semiconductor lighting
1.1 current driven thin film semiconductor lighting technology development (frontier technology)
To focus on improving the photoelectric properties of LED under high current injection and power supply reliability, carry out LED thin film epitaxial structure, chip fabrication and packaging technology, high integration, long-life LED drive chip and module, key technology breakthrough and high current driving thin film LED.
1.2 "Ten City 10000" semiconductor lighting application research and demonstration (cutting-edge technology)
Research on integrated technology of semiconductor lighting applications and intelligent control system, the development of low cost, high reliability, standardization of LED lighting products, to improve the light extraction efficiency, cooling capacity and reliability of the lamps, mass production and scale of application form; technical specifications and standards; construction of Exhibition Center experience. Refer to the guidelines for reporting requirements (four)]
2 new display
2.1 crystal materials and high performance laser engine technology (advanced technology)
To carry out such research on polarization doped lithium niobate crystal and laser engine technology breakthroughs in key technologies of low cost, miniaturization, high efficiency, high reliability, developed the laser and a variety of high performance laser hybrid light engine products, production scale and application.
2.2 mobile Internet display key technology research (cutting-edge technology)
High efficiency, high resolution and visual health of the new high performance mobile Internet display with the development of mobile Internet; breakthrough device structure optimization design, material preparation and other key technology; the development of high performance multi touch technology, mobile Internet display production and scale should be used.
3 new functions and intelligent materials
3.1 advanced superconducting materials and their applications (frontier technology)
Research and development of nuclear magnetic resonance with the key superconducting materials, high-performance coated conductor long strip and superconducting superconducting current limiter and filter based on high-performance superconducting materials and applications.
3.2 high-end organic fluorine material technology research and development (cutting-edge technology)
The development and application of six fluorine epoxy propane and its derivative monomer, high / low temperature fluorine rubber, fluorine coating key resin and coating grade polyvinylidene fluoride were developed.
3.3 new special function key materials (leading technology)
To carry out research on UHV materials, boron carbide based protective material, copper clad aluminum conductor materials, porous ceramics / resin composite materials and other special functional materials, insulation technology, production scale and application.
3.4 new passive electronic devices and its key supporting materials (advanced technology)
The research and application of high performance surface acoustic wave filter, anti fake and anti - interference and anti - electromagnetic interference materials, extremely thin metal conductor and high - end electronic aluminum foil.
3.5 new type of intelligent sensing and driving materials (advanced technology)
The development of a new type of sensing and driving materials, such as temperature sensitive, voltage sensitive, chemical sensitive, piezoelectric and magneto rheological fluids, can be used in the fields of nuclear power, metallurgy, information, rapid intelligent detection and so on.
4 advanced structures and composites
4.1 new lightweight high strength alloy (advanced technology)
The research and development of new high quality light alloy material, high strength and high toughness corrosion-resistant iron nickel alloy special development, ultra-thin, large and complex alloy structure, break through the material purification, homogenization, fine crystallization, metallurgical defect control, organization control and precision forming technology, realize the new alloy and improve the comprehensive performance of industrial preparation and coordination the scale of application.
4.2 high performance powder metallurgy materials (advanced technology)
Study on a new type of low cost iron-based powder metallurgy materials and high performance titanium based alloy powder and its preparation of advanced technology, high quality breakthrough hypoxia powder preparation, high density of powder metallurgy technology, and strengthen the combination of sintering, accurate thermal processing technology, realize the size and density of the key components of precision control and stability of preparation and application of scale.
4.3 high performance metal matrix composites (advanced technology)
The development of metal matrix composite structure design and processing technology of large component preparation, breakthrough of reinforcement and matrix adaptation, advanced composite technology, heat treatment and modified plastic forming component and connection technology, improve the heat resistance of materials and the use efficiency, realize the lightweight composite materials, high performance, multiple functions and preparation and Application of stable scale.
4.4 layered structure advanced composites (advanced technology)
Study on a variety of metal (aluminum, titanium, steel, etc.) and metal and non metal composite materials with layered structure, material composition, composite structure design breakthrough, collaborative processing deformation, interface, defect control, shape and key technology of precision control, to achieve high efficiency, low cost and mass production scale application of layered composite structure materials.
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