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高效体异质结太阳能电池,采用聚[2,7-(9,9-二己基芴)--alt-双噻吩]和 6,6-苯基 C61 丁酸甲酯共混物及其在串联电池中的应用。

Efficient bulk heterojunction solar cells with poly[2,7-(9,9-dihexylfluorene)-alt-bithiophene] and 6,6-phenyl C61 butyric acid methyl ester blends and their application in tandem cells.

机构信息

School of Electrical and Electronic Engineering, Nanyang Technological University, Nanyang Avenue, Singapore 639798, Singapore, People's Republic of China.

出版信息

ACS Appl Mater Interfaces. 2010 Mar;2(3):829-37. doi: 10.1021/am900823b.

Abstract

We present herein efficient bulk heterojunction (BHJ) solar cells via mixing poly[2,7-(9,9-dihexylfluorene)-alt-bithiophene] (F6T2) and 6,6-phenyl C61 butyric acid methyl ester (PCBM) with variable weight ratios. The photo-physics and morphology of F6T2:PCBM blend films and the electrical characteristics of their corresponding single cells were studied in details by changing PCBM concentration. The complete photoluminescence quenching of F6T2 emission occurs with only a small fraction of PCBM blended, demonstrating effective photoinduced charge transfer between F6T2 and PCBM. Morphology images from atomic force microscopy and scanning electron microscopy (SEM) reveal that the phase separation in F6T2:PCBM blend films becomes pronounced with the increase of PCBM concentration, resulting in the increased fill factor from 25.2% (1:1) to 56.9% (1:6). A SEM image also shows the phase separation is within the range of 10 - 20 nm. With the optimized F6T2:PCBM weight ratio (1:2), the single cell exhibits a highest power conversion efficiency of 2.46% due to the balance of light absorption and charge transport. Finally, the polymer-small molecule tandem cells are constructed using F6T2:PCBM BHJ as the bottom cell and copper phthalocyanine (CuPc):fullerene (C(60)) as the top cell. The open-circuit voltage (V(oc)) of tandem cell (1.27 V) is equal to the summation of the V(oc) values of the bottom cell (0.86 V) and the top cell (0.43 V).

摘要

我们通过混合聚2,7-(9,9-二己基芴)--alt-双噻吩和 6,6-苯基 C61 丁酸甲酯(PCBM)以不同的重量比来呈现高效的体异质结(BHJ)太阳能电池。通过改变 PCBM 浓度,详细研究了 F6T2:PCBM 共混膜的光物理和形态以及相应单电池的电特性。F6T2 发射的完全光致荧光猝灭仅发生在少量 PCBM 混合的情况下,表明 F6T2 和 PCBM 之间存在有效的光诱导电荷转移。原子力显微镜和扫描电子显微镜(SEM)的形态图像表明,随着 PCBM 浓度的增加,F6T2:PCBM 共混膜中的相分离变得明显,从而使填充因子从 25.2%(1:1)增加到 56.9%(1:6)。SEM 图像还显示相分离的范围在 10-20nm 之间。在优化的 F6T2:PCBM 重量比(1:2)下,由于光吸收和电荷传输的平衡,单个电池表现出最高的 2.46%功率转换效率。最后,使用 F6T2:PCBM BHJ 作为底电池,铜酞菁(CuPc): fullerene(C(60))作为顶电池构建聚合物-小分子串联电池。串联电池的开路电压(V(oc))(1.27V)等于底电池(V(oc))(0.86V)和顶电池(V(oc))(0.43V)的和。

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