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新型空穴传输聚合物及其光伏共混物中的电荷迁移率和复合。

Charge mobility and recombination in a new hole transporting polymer and its photovoltaic blend.

机构信息

Institute of Materials Research and Engineering, ASTAR (Agency for Science, Technology and Research), Singapore 117602.

出版信息

ACS Appl Mater Interfaces. 2010 May;2(5):1414-20. doi: 10.1021/am100078g.

Abstract

The charge mobility in a new hole transporting polymer, poly(2,6-bis(thiophene-2-yl)-3,5-dipentadecyldithieno[3,2-b;2',3'-d]thiophene) (PBTDTT-15), and its blend with (6,6)-phenyl-C(70)-butyric acid methyl ester (PC(70)BM) in a weight ratio of 1:3 at ambient atmosphere condition was investigated using time-of-flight (TOF) photoconductivity and photoinduced charge extraction by linearly increasing voltage (PhotoCELIV) techniques. The bulk heterojunction based photovoltaic (PV) blend (PBTDTT-15:PC(70)BM (1:3)) exhibited a promising power conversion efficiency (PCE) of 3.23% under air mass 1.5 global (AM 1.5G) illumination of 100mW/cm(2). The charge mobility and recombination properties of the best performing cells were investigated. The hole mobility in the pure PBTDTT-15 was in the range of 4 x 10(-4) cm(2)/(V s), which was reduced almost 5 times in the PBTDTT-15:PC(70)BM (1:3) blend. The PhotoCELIV transient observed for the photovoltaic (PV) blend was dominated by electrons, with the charge mobility of the order of 10(-3) cm(2)/(V s), and a weak shoulder at a long time scale due to holes. The effective bimolecular recombination coefficient (beta) obtained for the PV blend deviated significantly from the Langevin recombination coefficient (beta(L)) indicating a phase-separated morphology. The obtained results indicate that the PBTDTT-15:PC(70)BM blend can be potential for organic solar cell applications.

摘要

在环境气氛条件下,使用飞行时间(TOF)光电导和线性增加电压的光致电荷提取(PhotoCELIV)技术研究了新型空穴传输聚合物聚(2,6-双(噻吩-2-基)-3,5-二戊基二噻吩并[3,2-b;2',3'-d]噻吩)(PBTDTT-15)及其与(6,6)-苯基-C(70)-丁酸甲酯(PC(70)BM)的混合物,其重量比为 1:3。基于体异质结的光伏(PV)混合物(PBTDTT-15:PC(70)BM(1:3))在 100mW/cm(2)的空气质量 1.5 全球(AM 1.5G)照明下表现出有希望的 3.23%功率转换效率(PCE)。研究了性能最佳的电池的电荷迁移率和复合特性。在纯 PBTDTT-15 中,空穴迁移率在 4 x 10(-4) cm(2)/(V s)范围内,在 PBTDTT-15:PC(70)BM(1:3)混合物中降低了近 5 倍。观察到的光伏(PV)混合物的 PhotoCELIV 瞬变主要由电子主导,电荷迁移率约为 10(-3) cm(2)/(V s),由于空穴,在长时间尺度上存在较弱的肩。对于 PV 混合物获得的有效双分子复合系数(beta)与 Langevin 复合系数(beta(L))明显偏离,表明存在分相形态。获得的结果表明,PBTDTT-15:PC(70)BM 混合物可能适用于有机太阳能电池应用。

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