Department of Chemistry The Pennsylvania State University, University Park, Pennsylvania 16802, USA.
J Phys Chem B. 2010 Sep 30;114(38):12242-51. doi: 10.1021/jp105772y.
Ultrafast orientational motion and spectral diffusion of the carbonyl stretch vibration of the functionalized fullerene, PCBM, blended with the conjugated polymer, CN-MEH-PPV, are examined with two-dimensional infrared and polarization-resolved IR pump probe spectroscopy. In previous contributions from our group, the carbonyl stretch frequency of PCBM has been used as a local vibrational reporter to measure the temperature dependence of the time scale for dissociation of charge transfer excitons in CN-MEH-PPV:PCBM polymer blends. It was found that the rate of charge separation is independent of temperature, indicating that charge separation occurs through an activationless pathway. This assignment was supported by the observation at room temperature that thermal fluctuations do not give rise to spectral diffusion of the carbonyl stretch vibration on the picosecond and longer time scale. In this contribution, we examine the temperature dependence of the carbonyl vibrational dynamics to determine whether thermal fluctuations might give rise to spectral diffusion at other temperatures. We find that the time scale for fast wobbling-in-cone orientational motion is independent of temperature on the subpicosecond time scale. Similarly, spectral diffusion is not observed on the picosecond and longer time scale at all temperatures examined confirming our earlier interpretation of the frequency shift dynamics exclusively in terms of charge separation. Interestingly, the half angle characterizing the wobbling-in-cone orientational motion does increase at higher temperature due to increased free-volume resulting from thermal expansion of the polymer blend.
用二维红外和偏振分辨红外泵浦探测光谱研究了功能化富勒烯 PCBM 与共轭聚合物 CN-MEH-PPV 混合后的羰基伸缩振动的超快取向运动和光谱扩散。在我们小组之前的贡献中,PCBM 的羰基伸缩频率被用作局部振动报告器,以测量 CN-MEH-PPV:PCBM 聚合物混合物中电荷转移激子离解的时间尺度随温度的变化。结果发现,电荷分离的速率与温度无关,这表明电荷分离是通过无活化途径发生的。这一分配得到了室温下观察到的结果的支持,即在皮秒和更长时间尺度上,热涨落不会导致羰基伸缩振动的光谱扩散。在本贡献中,我们研究了羰基振动动力学随温度的变化,以确定热涨落是否会在其他温度下导致光谱扩散。我们发现,快速锥形摆动取向运动的时间尺度在亚皮秒时间尺度上与温度无关。同样,在所有研究的温度下,在皮秒和更长的时间尺度上都没有观察到光谱扩散,这证实了我们之前对频率移动动力学的解释,即仅根据电荷分离来解释。有趣的是,由于聚合物混合物的热膨胀导致自由体积增加,锥形摆动取向运动的特征半角在较高温度下确实会增加。