Department of Applied Chemistry, Graduate School of Engineering, Osaka University, 2-1 Yamadaoka, Suita, Osaka 565-0871, Japan.
J Am Chem Soc. 2012 Nov 21;134(46):19035-42. doi: 10.1021/ja309524f. Epub 2012 Nov 13.
State-of-the-art low band gap conjugated polymers have been investigated for application in organic photovoltaic cells (OPVs) to achieve efficient conversion of the wide spectrum of sunlight into electricity. A remarkable improvement in power conversion efficiency (PCE) has been achieved through the use of innovative materials and device structures. However, a reliable technique for the rapid screening of the materials and processes is a prerequisite toward faster development in this area. Here we report the realization of such a versatile evaluation technique for bulk heterojunction OPVs by the combination of time-resolved microwave conductivity (TRMC) and submicrosecond white light pulse from a Xe-flash lamp. Xe-flash TRMC allows examination of the OPV active layer without requiring fabrication of the actual device. The transient photoconductivity maxima, involving information on generation efficiency, mobility, and lifetime of charge carriers in four well-known low band gap polymers blended with phenyl-C(61)-butyric acid methyl ester (PCBM), were confirmed to universally correlate with the PCE divided by the open circuit voltage (PCE/V(oc)), offering a facile way to predict photovoltaic performance without device fabrication.
已研究出最先进的低带隙共轭聚合物,以将宽光谱阳光高效转化为电能,应用于有机光伏电池 (OPV)。通过使用创新材料和器件结构,光电转换效率 (PCE) 得到了显著提高。然而,要在这一领域实现更快的发展,快速筛选材料和工艺的可靠技术是前提条件。在此,我们报告了通过时间分辨微波电导率 (TRMC) 和 Xe 闪光灯的亚微秒白光脉冲的组合,实现了体异质结 OPV 的这种多功能评估技术。Xe 闪光灯 TRMC 允许在不制造实际器件的情况下检查 OPV 活性层。瞬态光导率最大值涉及与四种与苯基-C(61)-丁酸甲酯 (PCBM) 共混的知名低带隙聚合物的载流子生成效率、迁移率和寿命有关的信息,与 PCE 除以开路电压 (PCE/V(oc)) 普遍相关,提供了一种无需器件制造即可预测光伏性能的简便方法。