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首页> 外文期刊>Journal of Photochemistry and Photobiology, A. Chemistry >Protolytic behavior of water-soluble zinc(II) porphyrin and the electrocatalytic two-electron water oxidation to form hydrogen peroxide
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Protolytic behavior of water-soluble zinc(II) porphyrin and the electrocatalytic two-electron water oxidation to form hydrogen peroxide

机译:水溶性锌(II)卟啉和电催化双电子水氧化形成氢过氧化氢的质量特性

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摘要

Two-electron water oxidation is an energy-efficient way for solar energy conversion and one of the promising candidates to get through the bottleneck of artificial photosynthesis, photon-flux density problem. In light of renewable energy factor (REF) that is defined by Energy output/Energy input, for the realization of practical systems, the energy input for catalyst preparation have much importance. Herein, we report a facile, cost-effective and environment benign synthesis of zinc (II) 5, 10, 15, 20-tetrakis(N-methylpyridinium-4'-yeporphyrin (ZnTMPyP) in water at room temperature. We observed coordination of water molecules to the central Zn (II) ion of ZnTMPyP and four-step protolytic equilibria among five axially ligated species. Electrochemical and controlled potential electrolysis experiments, as well as theoretical DFT calculation, showed that ZnTMPyP(OH) (O-) exhibits the two-electron water oxidation to form hydrogen peroxide as the primary product initiated by one-electron oxidation process of the catalyst with a moderate turnover frequency (96.4 s(-1)) and a small over-potential (similar to 60 mV). Isotope-labeled studies clearly showed that water molecule served as an oxygen atom source in the formation of hydrogen peroxide.
机译:双电子水氧化是太阳能转换的节能方式,以及通过人工光合作用的瓶颈,光子通量密度问题的一个有希望的候选人。根据可再生能量因子(REF),由能量输出/能量输入定义,为了实现实际系统,催化剂制剂的能量输入非常重要。在此,我们在室温下报告了锌(II)5,10,15,20-四(N-甲基吡啶-4'-钠(ZnTmpym)的锌(II)5,10,15,20-四(ZnTmpym)的容易,成本效率和环境良性合成。我们观察到协调ZnTmpyp中的中央Zn(II)离子的水分子和五个轴向铰接物种中的四步质量平衡。电化学和控制潜在的电解实验,以及理论DFT计算,表明ZnTmpyp(OH)(O-)展示了双电子水氧化以形成过氧化氢作为通过催化剂的单电子氧化过程引发的初级产品(96.4 s(-1))和小过电(类似于60 mV)。同位素 - 标记的研究清楚地表明,水分子在形成过氧化氢中的氧原子来源。

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