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The role of crystal facets and disorder on photo-electrosynthesis

机译:晶体刻面和无序在光电合作用中的作用

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摘要

Photoelectrochemistry has the potential to play a crucial role in the storage of solar energy and the realisation of a circular economy. From a chemical viewpoint, achieving high conversion efficiencies requires subtle control of the catalyst surface and its interaction with the electrolyte. Traditionally, such control has been hard to achieve in the complex multinary oxides used in PEC devices and consequently the mechanisms by which surface exposed facets influence light-driven catalysts are poorly understood. Yet, this understanding is critical to further improve conversion yields and fine-tune reaction selectivities. Here, we review the impact that crystal facets and disorder have on photoelectrochemical reactivity. In particular, we discuss how the crystal orientation influences the energetics of the surface, the existence of defects and the transport of reactive charges, ultimately dictating the PEC activity. Moreover, we evaluate how facet stability dictates the tendency of the solid to undergo reconstructions during catalytic processes and highlight the experimental and computational challenges that must be overcome to characterise the role of the exposed facets and disorder in catalytic performance.
机译:光电化学有潜力发挥在太阳能的存储和至关重要的作用循环经济的实现。化学的观点,实现高转换效率需要微妙的控制催化剂表面及其交互电解液。难以实现的复杂multinary氧化物在压电陶瓷设备,因此使用表面暴露方面的机制影响light-driven催化剂是不佳理解。进一步提高产量和转换调整反应选择性。水晶方面和障碍的影响在光电化学反应。特别的,我们将讨论如何水晶取向影响的能量表面上看,和存在的缺陷运输活性指控,最终决定了压电陶瓷的活动。面稳定性决定的趋势如何在催化固体进行重建流程和实验和突出计算必须克服的挑战描述和暴露的作用方面障碍在催化性能。

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