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双亲性富勒烯/氧化锌杂化物作为阴极缓冲层,以提高倒置聚合物太阳能电池的电荷选择性。

Amphiphilic fullerene/ZnO hybrids as cathode buffer layers to improve charge selectivity of inverted polymer solar cells.

机构信息

College of Chemistry/Institute of Polymers, Nanchang University, 999 Xuefu Avenue, Nanchang 330031, China.

出版信息

Nanoscale. 2015 May 28;7(20):9194-203. doi: 10.1039/c5nr01456e.

Abstract

Two types of novel fullerene derivative/ZnO hybrids were prepared by physically blending amphiphilic fullerene-end-capped poly(ethylene glycol) (C60-PEG) with ZnO nanocrystals (ZnO/C60-PEG) and by in situ grown ZnO from C60-PEG (ZnO@C60-PEG) at relatively low temperatures. The C60-PEG could act as n-doping on the ZnO while the PEG side chain of C60-PEG could passivate the defects of the ZnO at the same time, consequently increasing the lowest unoccupied molecular orbital (LUMO) level. Compared with the ZnO/C60-PEG by the physical blend approach, the ZnO@C60-PEG by the growth approach showed a more favorable morphology and higher electron mobility by developing a homogeneous network. As a consequence, the efficiency of the inverted polymer solar cells based on thieno[3,4-b]-thiophene/benzodithiophene (PTB7):[6,6]-phenyl C71-butyric acid methyl ester (PC71BM) is raised to 8.0% for the ZnO@C60-PEG cathode buffer layer and to 7.5% for the ZnO/C60-PEG cathode buffer layer with improved long-term stability.

摘要

两种新型富勒烯衍生物/ZnO 杂化物通过物理共混具有两亲性富勒烯封端聚乙二醇(C60-PEG)与 ZnO 纳米晶(ZnO/C60-PEG)和原位生长 ZnO 从 C60-PEG(ZnO@C60-PEG)在相对较低的温度下。C60-PEG 可以作为 n 型掺杂 ZnO,同时 C60-PEG 的 PEG 侧链可以钝化 ZnO 的缺陷,从而提高最低未占据分子轨道(LUMO)水平。与通过物理混合方法制备的 ZnO/C60-PEG 相比,通过生长方法制备的 ZnO@C60-PEG 显示出更有利的形态和更高的电子迁移率,通过开发均匀的网络。因此,基于噻吩[3,4-b]-噻吩/苯并二噻吩(PTB7)的倒置聚合物太阳能电池的效率:[6,6]-苯基 C71-丁酸甲酯(PC71BM)提高到 8.0%,ZnO@C60-PEG 阴极缓冲层提高到 7.5%,ZnO/C60-PEG 阴极缓冲层的长期稳定性得到改善。

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