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染料敏化太阳电池TiO_2光阳极研究进展 被引量:2
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作者 李辉 奚红霞 《广东化工》 CAS 2008年第12期53-56,共4页
纳米TiO2是目前性能最为优良的染料敏化太阳电池(DSSC)光阳极材料。文章系统综述了优化纳米TiO2光阳极的染料吸附、电子传输、再生染料等性能的技术和方法,主要包括纳米TiO2光阳极薄膜微结构的调控、TiO2光阳极的离子/元素掺杂、TiO2光... 纳米TiO2是目前性能最为优良的染料敏化太阳电池(DSSC)光阳极材料。文章系统综述了优化纳米TiO2光阳极的染料吸附、电子传输、再生染料等性能的技术和方法,主要包括纳米TiO2光阳极薄膜微结构的调控、TiO2光阳极的离子/元素掺杂、TiO2光阳极的表面包覆、TiO2光阳极的表面处理等方面的国内外研究进展,并分析了目前TiO2光阳极存在的主要问题及未来的发展方向。 展开更多
关键词 纳米tio2光阳极 染料敏化太阳电池 微结构 掺杂 表面包覆 表面处理
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染料敏化太阳电池中TiO_2光阳极研究进展 被引量:15
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作者 赵勇 盛显良 翟锦 《化学进展》 SCIE CAS CSCD 北大核心 2006年第11期1452-1459,共8页
本文介绍了染料敏化太阳电池中TiO2光阳极的研究与应用现状,对TiO2光阳极常用的制备方法进行了综述,详细地讨论了复合核壳结构、掺杂电极、优化材料以及多级结构等一系列新材料的引入和结构改进所引起的电池光电性能的提高。文章指出获... 本文介绍了染料敏化太阳电池中TiO2光阳极的研究与应用现状,对TiO2光阳极常用的制备方法进行了综述,详细地讨论了复合核壳结构、掺杂电极、优化材料以及多级结构等一系列新材料的引入和结构改进所引起的电池光电性能的提高。文章指出获得具有好的光收集效率、快速的电荷传输以及优越的抑制电荷复合性能的多孔膜将是未来TiO2光阳极研究的方向。 展开更多
关键词 纳米tio2阳极 核壳结构 掺杂电极 材料优化 多级结构
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染料敏化太阳电池研究进展 被引量:1
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作者 姜磊 谢立娟 +2 位作者 王晓红 哈日巴拉 刘宗瑞 《内蒙古民族大学学报(自然科学版)》 2010年第3期262-265,共4页
本文介绍了基于TiO_2光阳极的染料敏化太阳电池(DSSC)的结构、工作原理和染料敏化太阳电池中电解质的分类,并详细论述了有机溶剂电解质、离子液体电解质、准固态电解质、有机空穴传输材料和无机p型半导体材料的研究进展及其DSSC各项关... 本文介绍了基于TiO_2光阳极的染料敏化太阳电池(DSSC)的结构、工作原理和染料敏化太阳电池中电解质的分类,并详细论述了有机溶剂电解质、离子液体电解质、准固态电解质、有机空穴传输材料和无机p型半导体材料的研究进展及其DSSC各项关键技术的实验和目前产业化研究的最新成果. 展开更多
关键词 染料敏化太阳电池 电解质 纳米tio2阳极
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Hybrid photoanode films based on sparse ZnO rod array-TiO_2 nanoparticles in dye-sensitized solar cells 被引量:2
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作者 WANG CaiLu GAO XiangDong +4 位作者 LI XiaoMin JIANG ZhengWu YANG ZhengHong GU ZhengYing HE Peng 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2012年第7期1183-1188,共6页
ZnO-TiO2 hybrid photoanodes were fabricated via the doctor-blade method by integrating vertically-grown sparse ZnO arrays with hydrothermal TiO2 nanoparticles. A special surface-coating technique was developed to depo... ZnO-TiO2 hybrid photoanodes were fabricated via the doctor-blade method by integrating vertically-grown sparse ZnO arrays with hydrothermal TiO2 nanoparticles. A special surface-coating technique was developed to deposit a thin TiO2 layer on the surface of ZnO rods. Microstructure, optical and photoelectrochemical performance of the hybrid photoanodes were investigated. The denser ZnO array exhibited bad filling behavior of nanoparticles in the interspace of ZnO rods, strong scattering and low conversion efficiency (0.27%). The sparser array showed a much better integrated microstructure, improved transmittance and high conversion efficiency (2.68%). The surface modification of ZnO rods by the TiO2 thin layer was found useful in improving the interfacial microstructure between the ZnO rod and the TiO2 bulk film, and the total conversion efficiency of 3.01% was achieved, higher than that of the pure TiO2 nanoparticle cell (2.93%). The increased scattering effects on the incident light, the enhanced electron transportation at TiO2/dye/electrolyte interface, and the inhabited recombination were responsible for this improvement. 展开更多
关键词 hybrid photoanode ZNO tio2 dye-sensitized solar cells
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The effect of dispersion of TiO_2 nanoparticles on preparation of flexible dye-sensitized photoanodes
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作者 ZHAO XiaoChong LIN Hong +5 位作者 LIU YiZhu LI Xin YANG Pan CHEN HuiYuan WANG Gang LI JianBao 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2012年第7期1203-1209,共7页
Generally, nanoparticles are easy to aggregate due to their nano sizes, which influence the physical and chemical properties. In this work, a dispersion treatment of the TiO2 nanoparticles with different average sizes... Generally, nanoparticles are easy to aggregate due to their nano sizes, which influence the physical and chemical properties. In this work, a dispersion treatment of the TiO2 nanoparticles with different average sizes was employed to improve the disper- sion of TiO2 nanoparticles, in order to prepare flexible photoanodes for dye-sensitized solar cells (DSCs) with novel photovol- talc properties at a low temperature. The effects of dispersion treatment on the dispersion of TiO2 nanoparticles, including the viscosities of the binder-free TiO2 paste, the morphologies and textural properties of nanoparticle-TiO2 films, and the photo- voltaic properties of the flexible DSCs, were investigated. Flexible indium-tin oxide (ITO)-coated polyethylene naphthalate (PEN) substrates with sputter deposited Pt were employed as the transparent flexible counter electrodes. A short-circuit photo- current density of 9.62 mA·cm^-2, an open-circuit voltage of 0.757 V, a fill factor of 0.589 and an overall light-to-energy con- version efficiency of 4.29% for the flexible DSCs under AM1.5 illumination of 100 mW·cm^-2 were obtained with dispersion treatment. A 30.8% increment of the energy conversion efficiency for DSCs made by dispersion treatment was obtained com- pared with that made without dispersion treatment. 展开更多
关键词 dispersion of nanoparticles dye-sensitized solar cells FLEXIBLE textural properties photovoltaic properties
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SnO_2 nanosheet as a photoanode interfacial layer for dyesensitized solar cells 被引量:1
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作者 蔡锋石 王菁 +1 位作者 袁志好 段月琴 《Optoelectronics Letters》 EI 2011年第5期321-324,共4页
SnO2 nanosheet films about 200 nm in thickness are successfully fabricated on fluorine-doped tin oxide (FTO) glass by a facile solution-grown approach. The prepared SnO2 nanosheet film is appfied as an interfacial l... SnO2 nanosheet films about 200 nm in thickness are successfully fabricated on fluorine-doped tin oxide (FTO) glass by a facile solution-grown approach. The prepared SnO2 nanosheet film is appfied as an interfacial layer between the nanocrystalline TiO2 film and the FTO substrate in dye-sensitized solar cells (DSCs). Experimental results show that the introduction of a SnO2 nanosheet film not only suppresses the electron back-transport reaction at the electrolyte/FTO interface but also provides an efficient electron transition channel along the SnO2 nanosheets, and as a result, increasing the open circuit voltage and short current density, and finally improving the conversion efficiency for the DSCs from 3.89% to 4.62%. 展开更多
关键词 Conversion efficiency Electron transitions FLUORINE Interfaces (materials) NANOCOMPOSITES Open circuit voltage Oxide films Photoelectrochemical cells Solar cells Tin Tin oxides Titanium dioxide
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