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首页> 外文期刊>Chemistry: A European journal >Synthesis and Characterization of Cyclopentadithiophene Heterofulvenes: Design Tools for Light-Activated Processes
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Synthesis and Characterization of Cyclopentadithiophene Heterofulvenes: Design Tools for Light-Activated Processes

机译:环戊二氢噻吩异戊烯的合成与表征:光活性过程的设计工具

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摘要

The development of new materials for solar-toenergy conversion should consider stability, ease of fabrication, and beneficial photophysical properties. In this context, a set of novel π-conjugated building blocks, with phospha- and arsaalkenes possessing a unique dithienyl annulated heterofulvenoid core, have been prepared as air- and moisture-stable sensitizers. These compounds unify electron-donor and -acceptor moieties, making them potential candidates for light-harvesting applications. Optical characterization of these systems was performed by steady-state and time-resolved absorption spectroscopy, supported by time-dependent DFT calculations. Tuning of the optical properties of these systems can be achieved by varying the pnictogen element at the bridgehead position, giving a bathochromic shift of ≈40 nm and coordinating the phosphaalkene towards gold Au~I centers. The latter results in a ≈2000-fold extension of the ≈10 ps lifetime of uncoordinated systems well into the ns regime.
机译:用于太阳能趾转换的新材料的开发应考虑稳定性,易于制造和有益的光物理性质。在这种情况下,已经制备了一组新的π缀合的构件块,其具有具有独特的二苯基环状的异素核心核心的磷和散氏菌属,作为空气和水分稳定的敏化剂。这些化合物统一了电子 - 供体和 - 感染者部分,使其成为光收获应用的潜在候选者。通过稳态和时间分辨的吸收光谱进行这些系统的光学表征,由时间依赖的DFT计算支持。通过在桥头位置改变肺泡元件,可以通过在桥头位置改变肺泡元件来实现这些系统的光学性质的调整,并在≈40nm的碱基转移,并将磷酸甲醛与金〜I中心配合。后者导致在NS政权的未加工系统的≈0ps寿命的≈20000倍的延伸。

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