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CdS 修饰的 ZnO 纳米棒异质结构用于改善混合光伏器件。

CdS-decorated ZnO nanorod heterostructures for improved hybrid photovoltaic devices.

机构信息

Advanced Technology Development Centre, IIT Kharagpur 721302, India.

出版信息

ACS Appl Mater Interfaces. 2012 Nov;4(11):6085-95. doi: 10.1021/am301721h. Epub 2012 Oct 30.

Abstract

Cadmium sulfide (CdS)-decorated zinc oxide (ZnO) nanorod heterostructures have been grown by a combination of hydrothermal and pulsed laser deposition techniques. Hybrid photovoltaic devices have been fabricated with CdS modified and unmodified ZnO nanorods blended separately with regioregular poly(3-hexylthiophene) (P3HT) polymer as the active layer. The solar cell performance has been studied as a function of ZnO concentration and the casting solvent (chlorobenzene, chloroform, and toluene) in the unmodified ZnO:P3HT devices. The power conversion efficiency is found to be enhanced with the increase of ZnO concentration up to a certain limit, and decreases at a very high concentration. The surface modification of ZnO nanorods with CdS leads to an increase in the open circuit voltage and short-circuit current, with enhanced efficiency by 300% over the unmodified ZnO:P3HT device, because of the cascaded band structure favoring charge transfer to the external circuit.

摘要

硫化镉 (CdS) 修饰的氧化锌 (ZnO) 纳米棒异质结构是通过水热和脉冲激光沉积技术相结合制备的。采用 CdS 修饰和未修饰的 ZnO 纳米棒分别与区域规整聚(3-己基噻吩) (P3HT) 聚合物混合,制备了混合光伏器件作为活性层。研究了太阳能电池性能作为 ZnO 浓度和未修饰 ZnO:P3HT 器件中铸造溶剂(氯苯、氯仿和甲苯)的函数。发现功率转换效率随着 ZnO 浓度的增加而提高,达到一定极限后降低,在非常高的浓度下降低。CdS 对 ZnO 纳米棒的表面修饰导致开路电压和短路电流增加,与未修饰的 ZnO:P3HT 器件相比,效率提高了 300%,因为级联能带结构有利于电荷转移到外部电路。

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