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Photochemical upconversion in metal-based octaethyl porphyrin-diphenylanthracene systems

机译:金属基八乙基卟啉-二苯基蒽系统中的光化学上转换

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摘要

This paper studies photochemical upconversion in solutions of octaethyl porphyrin (OEP) and diphenyl anthracene (DPA). The system has been widely used as a standard model system in the field of photochemical upconversion. Although, the kinetics of elementary processes contributing to photochemical upconversion in it have been extensively studied, there has been no research on the efficiency of upconversion in the system, despite of the fact that this parameter is detrimental for potential applications of photochemical upconversion process. We determine the yield of photochemical upconversion in a number of metal based OEP/DPA systems. Additionally, we studied the dependence of kinetic, and efficiency parameters of the process on the core metal of the porphyrin. We showed that the overall efficiency of photochemical upconversion depends significantly on the core metal of the triplet sensitizer porphyrin molecule. We attribute this effect to the differences in efficiency of triplet energy transfer from metal based OEP to DPA depending on the core metal.
机译:本文研究了八乙基卟啉(OEP)和二苯基蒽(DPA)溶液中的光化学上转换。该系统已被广泛用作光化学上转换领域中的标准模型系统。尽管已经对促进光化学上转换的基本过程的动力学进行了广泛的研究,但是,尽管该参数不利于光化学上转换过程的潜在应用,但尚未对系统中上转换的效率进行研究。我们确定了许多基于金属的OEP / DPA系统中光化学上转换的产率。此外,我们研究了动力学和效率参数对卟啉核心金属的依赖性。我们表明,光化学上转换的整体效率在很大程度上取决于三重态敏化剂卟啉分子的核心金属。我们将此效应归因于取决于芯金属的,从金属基OEP到DPA的三重态能量转移效率的差异。

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