首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Photostability studies of pi-conjugated chromophores with resonant and nonresonant light excitation for long-life polymeric telecommunication devices
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Photostability studies of pi-conjugated chromophores with resonant and nonresonant light excitation for long-life polymeric telecommunication devices

机译:π共轭发色团在共振和非共振光激发下对长寿命聚合物电信设备的光稳定性研究

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摘要

Theoretical and experimental studies of molecular photodegradation in pi-conjugated chromophores with resonant and nonresonant excitation relative to the lowest-energy electronic transition of the chromophore are performed. The limitations of previous photodegradation models are discussed, and new models that overcome these limitations and provide more accurate estimates of chromophore photostability are presented. In particular, the necessity of considering multiple degradation pathways in the analysis of photobleaching studies is shown. Photostability studies of a dihydrofuran thiophene-bridged dicyanomethylene based chromophore (FTC) employing 1.55-mu m excitation reveal that the photoinitiated decay kinetics are biphasic. We present what we believe to be a new, double-pathway photodegradation model capable of describing this behavior. Through investigations employing the singlet-oxygen quencher bis(dithiobenzil)nickel, photooxidation is shown to be one of the photodegradation pathways, and the ability of a quencher to inhibit chromophore photooxidation. is quantified. The studies presented here provide insight into the mechanism of photochemical degradation of pi-conjugated chromophores for devices operating in the visible and at telecommunication wavelengths. (c) 2007 Optical Society of America.
机译:进行了π共轭生色团的分子光降解的理论和实验研究,其相对于生色团的最低能量电子跃迁具有共振和非共振激发。讨论了以前的光降解模型的局限性,并提出了克服这些局限性并提供对发色团光稳定性的更准确估计的新模型。特别是显示了在光漂白研究分析中考虑多种降解途径的必要性。使用1.55微米激发对二氢呋喃噻吩桥连的双氰基亚甲基发色团(FTC)的光稳定性研究表明,光引发的衰变动力学是双相的。我们提出了我们认为是一种能够描述这种行为的新的双途径光降解模型。通过研究使用单线态氧猝灭剂双(二硫代苯并)镍,光氧化被证明是光降解途径之一,并且是淬灭剂抑制生色团光氧化的能力。被量化。此处介绍的研究为在可见光和电信波长下工作的设备提供了π共轭生色团的光化学降解机理的见解。 (c)2007年美国眼镜学会。

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