Hildner Richard, Winterling Laura, Lemmer Ulrich, Scherf Ullrich, Köhler Jürgen
Experimentalphysik IV and Bayreuther Institut für Makromolekülforschung (BIMF), Universität Bayreuth, Universitätsstrasse 30, 95447 Bayreuth, Germany.
Chemphyschem. 2009 Oct 5;10(14):2524-34. doi: 10.1002/cphc.200900445.
We employ low-temperature single-molecule spectroscopy combined with pattern recognition techniques for data analysis on a methyl-substituted ladder-type poly(para-phenylene) (MeLPPP) to investigate the electron-phonon coupling to low-energy vibrational modes as well as the origin of the strong spectral diffusion processes observed for this conjugated polymer. The results indicate weak electron-phonon coupling to low-frequency vibrations of the surrounding matrix of the chromophores, and that low-energy intrachain vibrations of the conjugated backbone do not couple to the electronic transitions of MeLPPP at low temperatures. Furthermore, these findings suggest that the main line-broadening mechanism of the zero-phonon lines of MeLPPP is fast, unresolved spectral diffusion, which arises from conformational fluctuations of the side groups attached to the MeLPPP backbone as well as of the surrounding host material.
我们采用低温单分子光谱结合模式识别技术,对甲基取代的梯形聚对苯撑(MeLPPP)进行数据分析,以研究电子 - 声子耦合到低能振动模式以及这种共轭聚合物中观察到的强光谱扩散过程的起源。结果表明,电子 - 声子与发色团周围基质的低频振动耦合较弱,并且在低温下共轭主链的低能链内振动不与MeLPPP的电子跃迁耦合。此外,这些发现表明,MeLPPP零声子线的主要谱线展宽机制是快速的、未解析的光谱扩散,这是由连接到MeLPPP主链的侧基以及周围主体材料的构象波动引起的。