纤维状染料敏化太阳能电池研究进展
发布时间:2018-11-08 11:53
【摘要】:纤维状染料敏化太阳能电池(F-DSSCs)是将具有光伏功能的单元高效地组装在高曲率非平面结构的纤维状导电基底上所构建的柔性染料敏化太阳能电池.由于它突破了传统平板基底的限制,具有可弯折、质量轻、方便运输、应用前景广等优点,引起各国科研工作者的广泛关注.本文简要介绍了F-DSSCs的基本结构及工作原理,并在此基础上结合近年来国内外的相关研究工作,重点介绍工作电极、对电极、电解质等的研究现状,同时也展望了F-DSSCs的未来发展趋势及应用前景.
[Abstract]:Fiber dye sensitized solar cells (F-DSSCs) are flexible dye-sensitized solar cells constructed by assembling the photovoltaic cells efficiently on a fibrous conductive substrate with high curvature and non-planar structure. Because it breaks through the limitation of the traditional plate substrate, it has the advantages of bending, light weight, convenient transportation, wide application prospect and so on, which has attracted the attention of researchers all over the world. In this paper, the basic structure and working principle of F-DSSCs are briefly introduced, and on the basis of this, the research status of working electrode, pair electrode, electrolyte and so on are mainly introduced, combined with the related research work at home and abroad in recent years. At the same time, the future development trend and application prospect of F-DSSCs are also prospected.
【作者单位】: 南阳师范学院化学与制药工程学院;长沙学院环境光催化应用技术湖南省重点实验室;南京大学固体微结构物理国家重点实验室江苏省纳米技术重点实验室环境材料与再生能源研究中心;
【基金】:国家重大科学研究计划(2014CB239302,2013CB632404) 国家自然科学基金(21473091,51272101,21301101)资助
【分类号】:TM914.4
[Abstract]:Fiber dye sensitized solar cells (F-DSSCs) are flexible dye-sensitized solar cells constructed by assembling the photovoltaic cells efficiently on a fibrous conductive substrate with high curvature and non-planar structure. Because it breaks through the limitation of the traditional plate substrate, it has the advantages of bending, light weight, convenient transportation, wide application prospect and so on, which has attracted the attention of researchers all over the world. In this paper, the basic structure and working principle of F-DSSCs are briefly introduced, and on the basis of this, the research status of working electrode, pair electrode, electrolyte and so on are mainly introduced, combined with the related research work at home and abroad in recent years. At the same time, the future development trend and application prospect of F-DSSCs are also prospected.
【作者单位】: 南阳师范学院化学与制药工程学院;长沙学院环境光催化应用技术湖南省重点实验室;南京大学固体微结构物理国家重点实验室江苏省纳米技术重点实验室环境材料与再生能源研究中心;
【基金】:国家重大科学研究计划(2014CB239302,2013CB632404) 国家自然科学基金(21473091,51272101,21301101)资助
【分类号】:TM914.4
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