Institute of Materials Research and Engineering, ASTAR (Agency for Science, Technology and Research), Singapore 117602.
ACS Appl Mater Interfaces. 2010 May;2(5):1414-20. doi: 10.1021/am100078g.
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.
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。