Barbour Larry W, Hegadorn Maureen, Asbury John B
Department of Chemistry, The Pennsylvania State University, University Park, Pennsylvania 16802, USA.
J Phys Chem B. 2006 Dec 7;110(48):24281-6. doi: 10.1021/jp065639p.
Two-dimensional infrared vibrational spectroscopy is used to examine conformational inhomogeneity and ultrafast orientational motion within local environments of an organic photovoltaic bulk heterojunction thin film. The bulk heterojunction material consists of a mixture of the electron donor poly[2-methoxy-5-(2'-ethylhexyloxy)-1,4-(1-cyanovinylene)phenylene] (CN-MEH-PPV) and the electron acceptor [6,6]-phenyl-C(61)-butyric acid methyl ester (PCBM). PCBM species reside in a distribution of environments within large domains of the molecules that cause their C=O stretch modes to be inhomogeneously broadened. The molecular inhomogeneity also results in frequency dependent vibrational relaxation dynamics. The butyric acid methyl ester group of PCBM undergoes ultrafast wobbling-in-the-cone orientational motion on the 110 fs time scale within a cone semiangle of 29 degrees . The vibrational dynamics are sensitive metrics of molecular order in the material and have implications for charge mobility and degradation phenomena in organic photovoltaic devices. This report represents the first study of organic photovoltaic materials using ultrafast two-dimensional infrared vibrational spectroscopy.
二维红外振动光谱用于研究有机光伏本体异质结薄膜局部环境中的构象不均匀性和超快取向运动。本体异质结材料由电子给体聚2-甲氧基-5-(2'-乙基己氧基)-1,4-(1-氰基亚乙烯基)亚苯基和电子受体[6,6]-苯基-C(61)-丁酸甲酯(PCBM)的混合物组成。PCBM分子存在于分子大区域内的多种环境分布中,这导致其C=O伸缩模式出现非均匀展宽。分子的不均匀性还导致了频率依赖的振动弛豫动力学。PCBM的丁酸甲酯基团在29度的锥半角内,在110飞秒的时间尺度上经历超快的锥内摆动取向运动。振动动力学是材料中分子有序性的敏感指标,对有机光伏器件中的电荷迁移率和降解现象有影响。本报告是首次使用超快二维红外振动光谱对有机光伏材料进行的研究。