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Dynamic Role of Cluster Cocatalysts on Molecular Photoanodes for Water Oxidation

机译:簇状助催化剂在分子光阳极上氧化水的动态作用

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摘要

While loading of cocatalysts is one of the most widely investigated strategies to promote the efficiency of photoelectrodes, the understanding of their functionality remains controversial. We established new hybrid molecular photoanodes with cobalt-based molecular cubane cocatalysts on hematite as a model system. Photoelectrochemical and rate law analyses revealed an interesting functionality transition of the {Co(II)(4)O-4}-type cocatalysts. Their role changed from predominant hole reservoirs to catalytic centers upon modulation of the applied bias. Kinetic analysis of the photoelectrochemical processes indicated that this observed transition arises from the dynamic equilibria of photogenerated surface charge carriers. Most importantly, we confirmed this functional transition of the cocatalysts and the related kinetic properties for several cobalt-based molecular and heterogeneous catalysts, indicating wide applicability of the derived trends. Additionally, complementary analytical characterizations show that a transformation of the applied molecular species occurs at higher applied bias, pointing to a dynamic interplay connecting molecular and heterogeneous catalysis. Our insights promote the essential understanding of efficient (molecular) cocatalyzed photoelectrode systems to design tailor-made hybrid devices for a wide range of catalytic applications.
机译:尽管助催化剂的负载是提高光电极效率的最广泛研究的策略之一,但对其功能的理解仍存在争议。我们在赤铁矿上建立了基于钴的分子古巴助催化剂的新型杂化分子光阳极作为模型系统。光电化学和速率定律分析显示{Co(II)(4)O-4}型助催化剂有趣的功能转变。在施加偏压的调节下,它们的作用从主要的孔储层变为催化中心。光电化学过程的动力学分析表明,这种观察到的跃迁是由光生表面电荷载体的动态平衡引起的。最重要的是,我们确认了助催化剂的这种功能转变以及几种基于钴的分子催化剂和非均相催化剂的相关动力学性质,表明衍生趋势的广泛适用性。此外,互补的分析特征表明,所施加的分子种类发生了转化,并在较高的施加偏压下发生,这表明分子与非均相催化之间存在动态相互作用。我们的见识促进了对高效(分子)共催化光电极系统的本质理解,从而为各种催化应用设计了量身定制的混合设备。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2019年第32期|12839-12848|共10页
  • 作者单位

    Univ Zurich Dept Chem Winterthurerstr 190 CH-8057 Zurich Switzerland;

    Univ Zurich Dept Phys Winterthurerstr 190 CH-8057 Zurich Switzerland;

    Empa Swiss Fed Labs Mat Sci & Technol Electron Microscopy Ctr CH-8600 Dubendorf Switzerland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 04:36:05

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