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Recent advances in earth-abundant photocatalyst materials for solar H-2 production

机译:地球丰光光催化剂材料的最新进展太阳能H-2生产

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摘要

Harvesting solar energy attracts great attention due to its abundant, clean, and permanent characteristics. Thus, photocatalysts have emerged as promising candidates for converting the solar energy to practically useful hydrogen molecules. Tremendous efforts have been devoted in developments of efficient photocatalysts for water splitting, but most of photocatalysts utilize noble metals to improve photocatalytic performance. Progress in photocatalyst materials for the hydrogen production coupled with a better understanding of the basic catalytic mechanisms has enabled better selection of catalytic nanomaterials with improved performance. In this review, we analyze the current state of the art in photocatalyst materials for photochemical hydrogen production through water splitting using earth-abundant materials. We also explore two main factors involved in both material morphology and sacrificial agent to further improve the activity, efficiency and stability of photocatalysts. (C) 2019 The Society of Powder Technology Japan. Published by Elsevier B.V. and The Society of Powder Technology Japan.
机译:收获太阳能由于其丰富,清洁和永久性特性而引起了极大的关注。因此,光催化剂已经成为希望将太阳能转化为实际上有用的氢分子的有希望的候选者。已经致力于有效的光催化剂用于水分裂的巨大努力,但大多数光催化剂利用贵金属来改善光催化性能。对氢催化剂材料的进展与更好地了解基本催化机制的求加源,使得能够更好地选择具有改进性能的催化纳米材料。在本次综述中,我们在光催化剂材料中分析了本领域现有技术,以通过使用土坯材料分裂通过水分裂来分析光催化剂材料。我们还探讨了材料形态和牺牲剂的两个主要因素,以进一步提高光催化剂的活性,效率和稳定性。 (c)2019年日本粉末技术学会。由elsevier b.v发表。和日本粉末科技会。

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