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Design of porphyrin-polyphenyleneethynylene light harvesting systems

机译:卟啉 - 多聚烯基乙烯光收割系统的设计

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The design of light harvesting systems based on zinc-porphyrin linked polyphenyleneethynylene systems is demonstrated through two different synthetic procedures. The use of the Sonogashira cross-coupling reaction was found to be problematic in several aspects and it was only possible for one of the synthetic strategies to incorporate a single porphyrin molecule in each polymer chain. The polymer materials were separated into fractions using preparative SEC and subjected to photophysical studies in both the solution and in the solid state. In the solid state light harvesting by the pendent polyphenyleneethynylene and energy transfer to the zinc-porphyrin was found to be high whereas it was low in solution. This observation was confirmed when making electroactive devices. Ⅰ/Ⅴ characteristics were measured on fabricated solar cells of the polymers. Material properties for the native polyphenyleneethynylene were determined using ultra violet photoelectron spectroscopy on thin films and carrier mobility studies were performed using pulse radiolysis time resolved microwave conductivity.
机译:通过两种不同的合成方法证明了基于锌 - 卟啉连接聚苯丙烯体系的光采收系统的设计。发现SONogashira交叉偶联反应在若干方面存在问题是有问题的,并且只有一种合成策略可以在每个聚合物链中掺入单个卟啉分子之一。使用制备秒将聚合物材料分离成级分,并在溶液和固态中进行光学药物研究。在垂体聚苯丙烯烯烯的固态光线中,发现锌 - 卟啉的能量转移是高的,而溶液中很低。在制造电活性器件时确认该观察结果。 Ⅰ/ⅴ在聚合物的制造太阳能电池上测量特性。使用超紫光光电子能谱在薄膜上测定本地多聚烯基烯基的材料性质,并且使用脉冲辐射时间分辨微波导电性进行载流子迁移率研究。

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