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Chapter 13 Multi-electron Transfer Catalysts for Air-Based Organic Oxidations and Water Oxidation

机译:第13章多电子转移催化剂,用于空气基有机氧化和水氧化

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Catalysts for multi-electron-transfer events are quite complicated just as the reactions they facilitate. Two classes of such catalysts, those for the air-based oxidation of organic compounds and those for the oxidation of water, are addressed in this chapter. Brief backgrounds in both these areas are provided followed by the ensemble of current challenges in each area illustrated by two ongoing cases in point. The efficient and sustained oxidation of water to dioxygen is critical to the production of solar fuels, which in turn may ultimately be necessary given the increasing cost of ever-less-accessible fossil fuels, the projected demographic trends, and the environmental consequences of fossil fuel use. Importantly, water oxidation catalysts must be connected with other functional units (light absorbers, reduction catalysts and key interfaces) to realize nanostructures or devices that efficiently produce solar fuels. Unfortunately these functional units are dependent on each other and also on several factors, thus predicting overall operation is a challenge in complexity.
机译:多电子转移事件的催化剂正如他们促进的反应一样复杂。本章提出了两种催化剂,用于有机化合物的空气化合物的氧化和水的氧化的催化剂。在两种持续案件中,提供两个这些区域的简要背景,然后提供了两种持续案件所示的每个区域的当前挑战的集合。对Dioxygen的有效和持续氧化对太阳能燃料的生产至关重要,这可能最终是必要的,鉴于无与伦比的化石燃料,预计的人口趋势和化石燃料的环境后果,最终可能是必要的用。重要的是,水氧化催化剂必须与其他功能单元(光吸收剂,还原催化剂和关键界面)连接,以实现有效生产太阳能燃料的纳米结构或装置。不幸的是,这些功能单元彼此依赖,并且还依赖于几个因素,因此预测整体操作是复杂性的挑战。

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