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Reduced graphene oxide-supported aggregates of CuInS2 quantum dots as an effective hybrid electron acceptor for polymer-based solar cells

机译:还原的氧化石墨烯负载的CuInS2量子点聚集体,作为聚合物基太阳能电池的有效杂化电子受体

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摘要

A hybrid featuring the CuInS2 quantum dots (CuInS2-QDs) on reduced graphene oxide (rGO) sheets is synthesized by a facile one-pot solvothermal approach with thiourea as S source, in which graphene oxide (GO) sheets are reduced into rGO sheets in course of the CuInS2-QDs aggregate growth. The growth mechanism of the hybrid is elucidated. It is found that adsorption of Cu2+ cations mainly takes place at epoxy/hydroxyl groups on GO sheets at room temperature and the adsorbed Cu+ cations resulting from the Cu2+ reduction at solvothermal temperature act as the nucleation for the surface growth of CuInS2-QDs into three-dimensional aggregates on GO sheets that are simultaneously reduced into rGO sheets. Our results demonstrate that the rGO/CuInS2-QDs hybrid is an effective electron acceptor with a complementary absorption property for polymer-based solar cells. The solar cells based on rGO/CuInS2-QDs hybrid and poly(1-methoxy-4-(2-ethylhexyloxy)-p-phenylene vinylene) exhibit an efficiency of 1.5%, much higher than the counterpart devices of rGO sheets. The effects of CuInS2-QDs aggregates on device performance are discussed. In the long run, this work provides a potential hybrid electron acceptor for low-cost and efficient solar cell fabrication. (C) 2015 Elsevier Ltd. All rights reserved.
机译:以硫脲为硫源,通过简便的一锅溶剂热法合成了在还原氧化石墨烯(rGO)片上具有CuInS2量子点(CuInS2-QDs)的杂化体,其中氧化石墨烯(GO)片被还原为rGO片。 CuInS2-QDs的累积增长过程。阐明了杂种的生长机理。发现在室温下,Cu2 +阳离子的吸附主要发生在GO片上的环氧基上,而溶剂热温度下Cu2 +还原产生的被吸附的Cu +阳离子则作为CuInS2-QDs表面生长成三分子的成核作用。 GO工作表上的尺寸聚合,同时将其缩减为rGO工作表。我们的结果表明,rGO / CuInS2-QDs杂化物是一种有效的电子受体,对基于聚合物的太阳能电池具有互补的吸收性能。基于rGO / CuInS2-QDs杂化材料和聚(1-甲氧基-4-(2-乙基己氧基)-对亚苯基亚乙烯基)的太阳能电池的效率为1.5%,远高于rGO板材的对应器件。讨论了CuInS2-QD聚集体对器件性能的影响。从长远来看,这项工作为低成本和高效的太阳能电池制造提供了潜在的混合电子受体。 (C)2015 Elsevier Ltd.保留所有权利。

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