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Electrochemical and Photoelectrochemical Water Oxidation for Hydrogen Peroxide Production

机译:用于氧化氢生产的电化学和光电化学水氧化

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摘要

Hydrogen peroxide (H2O2), as a green fuel and oxidant, has drawn increasing attention in the energy and environmental research. Compared with the traditional anthraquinone process, the electrochemical (EC) and photoelectrochemical (PEC) syntheses of H2O2 are cost-effective and environmentally friendly. In order to construct membraneless EC/PEC devices for the full H2O2 synthesis, anodic H2O2 production by water oxidation, which is less developed than cathodic H2O2 generation, is highly desirable. Here, we review recent developments for the EC/PEC H2O2 production by water oxidation, including fundamental aspects, benchmarking activity evaluation, material/catalyst selection, and strategies for increasing selectivity, efficiency, and accumulation. Furthermore, we discuss the challenges and outlook of water oxidation for H2O2 production, especially device-level development, accumulation and stability, and industrial applications. Our review is intended to stimulate studies further improving EC/PEC H2O2 production.
机译:过氧化氢(H2O2)作为一种绿色燃料和氧化剂,在能源和环境研究中受到越来越多的关注。与传统的蒽醌法相比,电化学法(EC)和光电化学法(PEC)合成H2O2既经济又环保。为了构建完全合成H2O2的无膜EC/PEC装置,非常需要通过水氧化产生阳极H2O2,这比阴极H2O2生成要慢。在此,我们回顾了水氧化法生产EC/PEC H2O2的最新进展,包括基本方面、基准活性评估、材料/催化剂选择,以及提高选择性、效率和积累的策略。此外,我们还讨论了水氧化用于H2O2生产的挑战和前景,特别是设备级开发、积累和稳定性以及工业应用。我们的综述旨在促进进一步提高EC/PEC H2O2产量的研究。

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