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Recent Advances and Emerging Trends in Photo- Electrochemical Solar Energy Conversion

机译:光电化学太阳能转换的最近进展和新兴趋势

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摘要

Photo-electrochemical (PEC) solar energy conversion offers the promise of low-cost renewable fuel generation from abundant sunlight and water. In this Review, recent developments in photo-electrochemical water splitting are discussed with respect to this promise. State-of-the-art photo-electrochemical device performance is put in context with the current understanding of the necessary requirements for cost-effective solar hydrogen generation (in terms of solar-to-hydrogen conversion efficiency and system durability, in particular). Several important studies of photo-electrochemical hydrogen generation at p-type photocathodes are highlighted, mostly with protection layers (for enhanced durability), but also a few recent examples where protective layers are not needed. Recent work with the widely studied n-type BiVO4 photoanode is detailed, which highlights the needs and necessities for the next big photoanode material yet to be discovered. The emerging new research direction of photo-electrocatalytic upgrading of biomass substrates toward value-added chemicals is then discussed, before closing with a commentary on how research on PEC materials remains a worthwhile endeavor.
机译:光电化学(PEC)太阳能转换提供了丰富的阳光和水的低成本可再生燃料的承诺。在本次综述中,关于这一承诺讨论了光学电化学水分裂的最新发展。最先进的光电化学器件性能在上下文中,目前对经济高效的太阳能发电的必要要求(在太阳能 - 氢转换效率和系统耐用性方面)。突出显示p型光电处理的光电化学氢生成的几个重要研究,主要是具有保护层(用于增强的耐久性),也是最近不需要保护层的少数示例。近期使用广泛研究的N型Bivo4 PhotoNode的工作详细介绍了尚未发现的下一个大型光电码材料的需求和必需品。然后讨论了在结束时讨论了对增值化学品的生物量升级生物量升级的新兴的新研究方向,然后再与PEC材料研究如何仍然是一个有价值的努力。

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