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通过反应控制的溶液相配体交换提高胶体量子点光伏器件的开路电压。

Enhanced Open-Circuit Voltage in Colloidal Quantum Dot Photovoltaics via Reactivity-Controlled Solution-Phase Ligand Exchange.

机构信息

Department of Electrical and Computer Engineering, University of Toronto, 10 King's College Road, Toronto, Ontario, M5S 3G4, Canada.

出版信息

Adv Mater. 2017 Nov;29(43). doi: 10.1002/adma.201703627. Epub 2017 Oct 9.

Abstract

The energy disorder that arises from colloidal quantum dot (CQD) polydispersity limits the open-circuit voltage (V ) and efficiency of CQD photovoltaics. This energy broadening is significantly deteriorated today during CQD ligand exchange and film assembly. Here, a new solution-phase ligand exchange that, via judicious incorporation of reactivity-engineered additives, provides improved monodispersity in final CQD films is reported. It has been found that increasing the concentration of the less reactive species prevents CQD fusion and etching. As a result, CQD solar cells with a V of 0.7 V (vs 0.61 V for the control) for CQD films with exciton peak at 1.28 eV and a power conversion efficiency of 10.9% (vs 10.1% for the control) is achieved.

摘要

胶体量子点(CQD)多分散性引起的能量无序限制了 CQD 光伏的开路电压(V )和效率。在 CQD 配体交换和薄膜组装过程中,这种能量展宽今天显著恶化。在此,报道了一种新的溶液相配体交换方法,通过合理引入反应性工程添加剂,在最终的 CQD 薄膜中提供了更好的单分散性。研究发现,增加反应性较低的物质的浓度可以防止 CQD 的融合和刻蚀。因此,对于具有激子峰为 1.28 eV 的 CQD 薄膜,实现了 V 为 0.7 V(对于对照为 0.61 V)的 CQD 太阳能电池和 10.9%的功率转换效率(对于对照为 10.1%)。

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