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Sb_2S_3对枝状TiO_2阵列的修饰及其在杂化太阳电池中的应用 被引量:1
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作者 李英品 魏亚男 +4 位作者 郝彦忠 冯康宁 张玉梅 裴娟 孙宝 《河北科技大学学报》 CAS 2018年第4期372-378,共7页
为了提供多条电子传输通道,增加窄禁带半导体和有机半导体的负载量,采用一步水热法,在FTO基底上制备了由纳米管和纳米线组装而成的枝状TiO_2;通过化学浴沉积法,在枝状TiO_2上成功地制备了窄禁带半导体Sb_2S_3;利用SEM,XRD,紫外-可见吸... 为了提供多条电子传输通道,增加窄禁带半导体和有机半导体的负载量,采用一步水热法,在FTO基底上制备了由纳米管和纳米线组装而成的枝状TiO_2;通过化学浴沉积法,在枝状TiO_2上成功地制备了窄禁带半导体Sb_2S_3;利用SEM,XRD,紫外-可见吸收光谱,瞬态光电流,稳态荧光光谱及J-V曲线等手段,对样品形貌、晶型、吸光性能和光电性能进行了表征和测试,探究Sb_2S_3沉积时间对电池效率的影响。结果表明:稀疏的枝状TiO_2阵列垂直于FTO导电玻璃生长,为电荷传输提供了有利条件;Sb_2S_3的加入,加强了电极材料对可见光的吸收,提高了光电流强度及荧光猝灭强度,有利于光生载流子的产生和转移;由枝状TiO_2/Sb_2S_3(3h)/P3HT/PEDOT∶PSS/Au构成的杂化太阳电池的能量转换效率达到了1.10%,是未沉积Sb_2S_3的杂化太阳电池能量转换效率的10倍。在多级结构TiO_2上沉积Sb_2S_3,有利于提高电极材料对可见光的吸收,加强光生载流子的传输能力,拓宽光谱响应范围,提高光电性能,对于解决单纯TiO_2电极吸收强度较弱和光谱响应范围较窄等问题具有重要意义。 展开更多
关键词 电化学 枝状TiO2 Sb2S3 化学浴沉积法 杂化太阳电池
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Photoelectrochemical performance of a sub-micron structured film with poly(3-methylthiophene) (P3MT)-modified CdTe/ZnO shell-core sub-micron tube arrays 被引量:3
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作者 HAO YanZhong LUO Chong +4 位作者 SUN Bao SUN Shuo li yingpin SHEN ShiGang XU DongSheng 《Science China Chemistry》 SCIE EI CAS 2013年第6期755-762,共8页
A sub-micron structured film with a poly(3-methylthiophene) (P3MT)-modified CdTe/ZnO shell-core sub-micron tube array has been prepared by a series of electrodeposition processes, and a semiconductor-sensitized solar ... A sub-micron structured film with a poly(3-methylthiophene) (P3MT)-modified CdTe/ZnO shell-core sub-micron tube array has been prepared by a series of electrodeposition processes, and a semiconductor-sensitized solar cell based on this structure was also fabricated. Vertically oriented ZnO sub-micron tubes were obtained on an indium tin oxide (ITO) substrate, and then CdTe nanocrystals and a thin P3MT layer were electrodeposited sequentially onto the walls of the ZnO sub-micron tubes. A suitable thickness of CdTe and P3MT could improve the photovoltaic properties of the solar cell, which was attributed to the enhancement in the light absorption and the decrease in the recombination of photogenerated carriers. In addition, a p–n heterojunction formed between the interface of CdTe and P3MT played an important part in the efficient separation and fast transport of photogenerated carriers in the sub-micron structure. A power conversion efficiency of 1.20% was obtained with this type of solar cell. 展开更多
关键词 semiconductor-sensitized solar cell CdTe nanoparticle ZnO sub-micron tube array
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