光伏材料

  • 网络photovoltaic material
光伏材料光伏材料
  1. CIS光伏材料的发展

    Recent Development of CIS Photovoltaic Materials

  2. 本论文合成了三种以DPP为中心的有机小分子光伏材料,并且结合理论计算对三种材料的光物理与电化学性能进行了测试。

    In this article , we have synthesized three small molecule photovoltaic materials based on DPP .

  3. 本论文基于染料敏化太阳能电池(Dye-sensitizedsolarcells,简称DSSC)对敏化剂和电解质的要求及其最新发展趋势,设计并合成了两个系列同时带有空穴传输基团和染料部分的双功能聚合物光伏材料。

    Based on the need of sensitizer and electrolyte in dye sensitized solar cells ( DSSC ), two series of bifunctional polymeric photovoltaic materials containing sensitizer and hole-transporting group were designed and synthesized .

  4. 基于3,6-咔唑D单元的有机小分子光伏材料C8具有更好的光伏性能,它与PCBM共混的本体异质结太阳能电池的能量转换效率为0.38%。

    The C8 with 3,6-carbazole group presented better photovoltaic performance . The PCE of the BHJ organic solar cells based on a blend of the C8 and PCBM was 0.38 % . 3 .

  5. 以苯并噻二唑为A单元,以芴和咔唑为D单元的A-D-A型有机小分子光伏材料C7-C10,同样具有良好的热稳定性能,以及相似的紫外吸收光谱和光致发光光谱。

    The organic photovoltaic electron-donor materials of C7-C10 with an A-D-A structure , which contain two acceptor units of benzothiadiazole and a donor unit of fluorene or carbazole , also exhibited excellent thermal stability , as well as similar UV absorption and PL spectra .

  6. 有机光伏材料与器件研究的新进展

    Recent Progress in Organic Photovoltaic Materials and Devices

  7. 最后提出基于黑硅光伏材料的太阳能电池的制造方案。

    Finally , we set solar cells manufacturing solutions based on the ― black silicon ‖ photovoltaic material .

  8. 下一代光伏材料产生电能的过程有点像在工厂里实现光合作用。

    This next-generation photovoltaic material produces electricity through a process that is roughly analogous to photosynthesis in plants .

  9. 但是有机光伏材料的溶解性差、对光的吸收效率低,制约了其在太阳能电池中的应用。

    However , poor solubility and low light absorption efficiency of organic photovoltaic materials limit the applications in solar cells .

  10. 有机小分子供体材料中的供体单元和受体单元的连接方式,影响有机光伏材料的光伏性能。

    The photovoltaic performance of the organic photovoltaic materials can be affected by the connected way of donor and acceptor units .

  11. 多氟多化工股份有限公司是从事高性能无机氟化物、锂离子电池材料和光伏材料研发、生产和销售的国家级高新技术企业。

    DFD is titled as national high-tech enterprise specializes in development , production and sales of high performance of inorganic fluoride , Li-ion battery materials and photovoltaic materials .

  12. 聚合物光伏材料的吸收光谱与载流子迁移率是影响聚合物太阳能能量转换效率的重要因素。

    The absorption spectra and hole mobility of conjugated polymer donor materials are the major factors to affect the power conversion efficiency ( PCE ) of polymer solar cells ( PSCs ) .

  13. 在有机光伏材料选择中,尽管聚合物取得了较高的光电转化效率,但是有机小分子材料具有结构单一、重复性好、易于提纯等优势,成为研究的热点。

    In the selection of organic photovoltaic materials , despite that polymers achieve high power conversion efficiency , researchers recently focus on small molecular materials for their simple structure , well reproduction , facile purification , and so forth .

  14. 将富勒烯与聚噻吩通过共价键连接在一起,可解决它们的共混膜中的相分离问题,有望提高器件效率,是未来有机和聚合物光伏材料研究的一个重要方向。

    Connecting the PT donor with the fullerene acceptor together by covalent bond could solve the phase separation problem , so that it increases the PCE of the polymer solar cells , which should be an important future research direction in the polymer photovoltaic materials .

  15. 氮离子束能量对光伏新材料氮化碳薄膜的影响

    Influence of nitrogen ion energy on photovoltaic new material carbon nitride films

  16. 并预期在制备太阳电池时,它可能代替硅,而成为今后主要的光伏半导体材料。

    Then expect that the pyrite is a possible substitute of the Silicon as the cardinal photovoltaic semiconductor material to prepare for the solar cell .

  17. CdTe/CdS薄膜太阳电池因其拥有较高的理论转化效率,以及高效、稳定、廉价等特点,是目前最受关注的薄膜光伏器件材料。

    CdTe / CdS thin film solar cells because of the high theoretical conversion efficiency , as well as efficient , stable , cheap and so on , is currently the most talked about film photovoltaic devices materials .

  18. 导电聚合物的发现提供了新的制造廉价光伏电池的材料,使其研究开发低成本光伏电池成为可能。

    The discovery of electric conducting polymers supplies new materials and makes it possible to research and develop photovoltaic cells of low cost .

  19. 表面光伏谱在光电材料与器件研究中的应用

    Application of the Surface Photovoltage Spectroscope in the Photovoltaic Material and Devices

  20. 多晶硅是作为光伏转换器最好的材料之一,95%的太阳能电池都是以硅作为基材。

    Polysilicon is presently one of the best materials for application in photovoltaic energy conversion and the polysilicon is the base material in95 % of solar cells .

  21. 晶体硅不仅是微电子工业的基础材料,也是光伏工业的基础材料,其体内的杂质或缺陷会显著地影响各种硅基器件的性能。

    In microelectronic or photovoltaic industry , crystalline silicon is the main material in which impurities or defects can remarkably influence on the properties of silicon-based devices .

  22. 它们包括可以减少石油消费量的电动汽车、控制并限制能源使用的智能电表、碳捕获和储存、洁净煤技术、先进电池和其他存储技术、光伏发电和先进材料。

    That includes electric vehicles which would reduce oil consumption , smart meters which would control and limit energy use , carbon capture and storage , clean coal technology , advanced batteries and other storage technologies , photovoltaics and advanced materials .

  23. 齐聚噻吩衍生物的光伏性能及三苯胺衍生物光伏材料的合成与表征第三章:研究了合成的苯甲酸苯胺衍生物的光物理特性。

    Photovoltaic Properties of Oligo ( Thiophene ) s Derivatives and Synthesis & Characterization of Photovoltaic Materials with Triphenylamine Units ; In chapter three , the photophysical properties of the synthesized benzanilides ( MBAs ) were studied .

  24. 在光伏发电技术中,除了光伏电池组件的材料技术与生产工艺,光伏逆变器的控制技术也十分重要,控制器性能的好坏直接决定了光伏并网发电系统的稳定性、输出效率、安全性等性能。

    In the researches of photovoltaic ( PV ) power generation , besides the material techniques of photovoltaic cells and the level of technics in production , the control of PV inverter is very important to the performance of the photovoltaic power system .