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Tandem structured quantum dot/rod sensitized solar cell based on solvothermal synthesized CdSe quantum dots and rods

机译:基于溶剂热合成CdSe量子点和棒的串联结构量子点/棒敏化太阳能电池

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摘要

The quantum dots (QD) and quantum rods (QR) of different sizes, shapes, and crystalline phases are synthesized by modified solvothermal method spontaneously employed stirring system and controlled internal applied pressure. The tandem structure of QDs and QRs as well as tetrapods is formed on hierarchical porous titania photoanode by means of electrophoretic deposition. A tremendous enhancement in efficiency of the cell is obtained in samples synthesized at 220 ℃ for 24 h due to the formation of tandem structure, utilization of Cu_2S/CNT composite cathode, co-sensitization of CdS and CdSe, and beneficial role of QRs in electron lifetime. Smaller size QDs with higher band gaps penetrate deeper through the macro-channels of the hierarchical porous structure, while the QRs and tetrapods with lower band gaps are placed on upper layers. Although the charge injection is improved in smaller QDs, the electron lifetime in QRs is longer mainly due to the higher absorption cross section, proper charge separation, introduction of quasi-one dimensional route for charge transport through QRs, and higher surface area available for regeneration with electrolyte. The cell shows the efficiency of 1.05% with J_(SC) of 4.48 mA cm~(-2), V_(OC) of 0.45 V, and fill factor of 0.52.
机译:通过改进的溶剂热法自发采用搅拌系统并控制内部施加压力,合成了大小,形状和晶相不同的量子点(QD)和量子棒(QR)。 QD和QR以及四脚架的串联结构是通过电泳沉积在分层的多孔二氧化钛光阳极上形成的。由于串联结构的形成,Cu_2S / CNT复合阴极的利用,CdS和CdSe的共敏化以及QRs在电子中的有益作用,在220℃合成24 h的样品中,电池效率得到了极大的提高。一生。具有较高带隙的较小尺寸QD通过分层多孔结构的宏观通道渗透更深,而具有较低带隙的QRs和四脚架放置在上层。尽管在较小的量子点中改进了电荷注入,但QRs中的电子寿命更长,这主要归因于较高的吸收截面,适当的电荷分离,引入了准一维路径以通过QRs进行电荷传输以及可用于再生的更大表面积。与电解质。该电池在J_(SC)为4.48 mA cm〜(-2),V_(OC)为0.45 V,填充系数为0.52的情况下显示出1.05%的效率。

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