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Photoelectrochemical Cells Utilizing Tunable Corroles

机译:利用可调节的光电化学电池

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Organic dyes with their wide range of molecular structures and spectroscopic features show great promise for solar energy applications. Corroles, structural analogues to porphyrins, are highly fluorescent molecules with tunable properties. We have synthesized a series of structurally similar corroles chelating gallium and phosphorus, along with a beta-chlorinated phosphorus Corrole, and determined their photophysical and electrochemical properties. The electrochemical potentials to oxidize the corroles range from 0.78 V vs NHE for the gallium corrole to 1.42 V for the beta-octachlorinated phosphorus corrole. We are interested in developing photosensitizers for water oxidation on a metal oxide-based photoanode, so the corroles were modified to contain a meso-phenyl-COOH subtituent for binding to metal oxide surfaces. The ability of these corrole dyes to act as photosensitizers was assessed by comparing the corroles in a model dye sensitized solar cell-design. Transient absorption speotroscopy was utilized to analyze recombination dynamics and determine the kinetics of iodide oxidation. The most efficient photoelectrochemical cell was achieved for the phosphorus corrole P-2 with electrochemical properties and kinetics suitable for both photoinduced electron injection into TiO2 and oxidation of iodide. This structure-function study highlights the wide window for tuning corrole electrochemical potentials while still Maintaining desirable photophysical properties, important variables when designing dyes for-applications in photoelectrochemical water-oxidation cells.
机译:具有广泛的分子结构和光谱特征的有机染料对太阳能应用显示出巨大的希望。卟啉是卟啉的结构类似物,是具有可调特性的高荧光分子。我们已经合成了一系列在结构上相似的螯合镓和磷的螯合物,以及一个β-氯化磷Corrole,并确定了它们的光物理和电化学性质。氧化花冠的电化学电势范围为:相对于NHE为0.78 V(对于镓腐蚀物)到1.42 V(对于β-八氯化磷腐蚀物)。我们对开发用于在基于金属氧化物的光阳极上进行水氧化的光敏剂感兴趣,因此对这些粗油进行了改性,使其含有与金属氧化物表面结合的中苯基-COOH取代基。通过在模型染料敏化太阳能电池设计中比较这些杂色,可以评估这些杂色染料充当光敏剂的能力。利用瞬态吸收光谱分析重组动力学并确定碘化物氧化的动力学。磷腐蚀物P-2的电化学性能和动力学均适用于光致电子注入TiO2和碘化物的氧化,是最高效的光电化学电池。这项结构功能研究突显了在调节腐蚀液电化学势的同时仍保持理想的光物理特性的广阔窗口,这是设计用于光电化学水氧化电池的染料时的重要变量。

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