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首页> 外文期刊>Angewandte Chemie >An Integrated Photoelectrochemical-Chemical Loop for Solar-Driven Overall Splitting of Hydrogen Sulfide
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An Integrated Photoelectrochemical-Chemical Loop for Solar-Driven Overall Splitting of Hydrogen Sulfide

机译:用于太阳能驱动的硫化氢整体分解的集成光电化学-化学回路

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摘要

Abundant and toxic hydrogen sulfide (H2S) from industry and nature has been traditionally considered a liability. However, it represents a potential resource if valuable H2 and elemental sulfur can be simultaneously extracted through a H2S splitting reaction. Herein a photochemical-chemical loop linked by redox couples such as Fe~(2+)/Fe~(3+) and I~-/I3~-for photoelectrochemical H2 production and H2S chemical absorption redox reactions are reported. Using functionalized Si as photoelectrodes, H2S was successfully split into elemental sulfur and H2 with high stability and selectivity under simulated solar light. This new conceptual design will not only provide a possible route for using solar energy to convert H2S into valuable resources, but also sheds light on some challenging photochemical reactions such as CH4 activation and CO2 reduction.
机译:传统上,来自工业和自然界的丰富且有毒的硫化氢 (H2S) 一直被认为是一种负担。然而,如果有价值的 H2 和元素硫可以通过 H2S 分解反应同时提取,它代表了一种潜在的资源。本文报道了一种由Fe~(2+)/Fe~(3+)和I~-/I3~-等氧化还原对连接的光化学-化学环路,用于光电化学H2的产生和H2S的化学吸收氧化还原反应。以官能化Si为光电极,在模拟太阳光下成功将H2S分解为元素硫和H2,具有较高的稳定性和选择性。这种新的概念设计不仅为利用太阳能将H2S转化为宝贵资源提供了一条可能的途径,而且还揭示了一些具有挑战性的光化学反应,如CH4活化和CO2还原。

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