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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >First row transition metal catalysts for solar-driven water oxidation produced by electrodeposition
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First row transition metal catalysts for solar-driven water oxidation produced by electrodeposition

机译:电沉积产生的太阳能驱动水氧化的第一排过渡金属催化剂

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As our reliance on renewable energy resources increases, so will our need to store this energy in the form of chemical fuels to iron-out peaks and troughs in supply. Sunlight, the most plentiful source of renewable energy, is especially problematic in this regard as it is so diffuse. One way to convert solar irradiation to fuels effectively would be to develop large surface area photo-electrochemical devices that could use sunlight directly to split water into H-2 and O-2. However, in order to be feasible, such an approach requires that these devices (and their components) are extremely cheap. In this review, we will discuss catalysts for the water oxidation half-reaction of electrochemical water splitting that can be produced by electrodeposition (a technique well suited to large-scale, low-cost applications), and that are based on the comparatively plentiful and inexpensive first row transition metals. Special attention will be paid to the electrodeposition conditions used in the various examples given, and structure-function relationships for electrochemical water oxidation for the materials produced by these techniques will be elucidated.
机译:随着我们对可再生能源的依赖增加,我们将需要以化学燃料的形式存储这种能源,以解决铁矿石供应高峰和低谷。阳光是最丰富的可再生能源,在这方面尤其成问题,因为它是如此分散。有效地将太阳辐射转化为燃料的一种方法是开发大表面积的光电化学装置,该装置可以直接利用阳光将水分解为H-2和O-2。但是,为了可行,这种方法要求这些设备(及其组件)非常便宜。在这篇综述中,我们将讨论可通过电沉积(非常适合大规模,低成本应用的技术)生产的电化学水分解的水氧化半反应催化剂,该催化剂基于相对大量的廉价的第一排过渡金属。将特别注意在给出的各个示例中使用的电沉积条件,并将阐明通过这些技术生产的材料的电化学水氧化的结构-功能关系。

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