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Constructing Earth-abundant 3D Nanoarrays for Efficient Overall Water Splitting - A Review

机译:构建地球丰满的3D纳米阵列,以实现高效的整体水分分裂 - 评论

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Constructing nanoarrays is a promising way to achieve efficient overall water-splitting for H-2 production. At first, this paper introduces the significance of constructing nanoarrays for gas evolution reactions: Constructing electrocatalyst with nanoarray structure can provide superaerophobic surface, which can lower the bubble adhesive force and bubble size by forming a discontinuous triple phase contact line (TPCL), and that can facilitate the release of gas, while it can afford abundant active sites, and that can enhance the activity and stability for gas evolution reactions. Then, we review the activity (including <= 1.49 V), and stability (including >= 100 h) for overall water splitting in alkaline medium of various kinds of recently reported earth-abundant 3D nanoarray bifunctional electrocatalysts. Later, we review the efficient strategies such as constructing nanoarrays with doping metals/heteroatoms, bi- metallic/multi-metallic materials, metal oxides, metal phosphide/phosphate, metal nitrides, carbon, amorphous materials, metal chalcogenides (metal sulfides and selenides), coreshell/hetero/hollow structure, vacancies/defects, and well-matched electrode pair to achieve efficient overall water splitting. Then, we review the construction of earth-abundant nanoarray bifunctional electrocatalyst for efficient overall water splitting in acid medium. Finally, we discussed the gas separation in water electrolysis.
机译:构建纳米阵列是实现H-2生产的高效整体水分裂的有希望的方法。首先,本文介绍了构建气体进化反应的纳米阵列的重要性:用纳米阵列结构构建电催化剂可以提供超血管表面,通过形成不连续三相接触线(TPCL),可以降低气泡粘合力和气泡尺寸可以促进气体的释放,同时它可以提供丰富的活性位点,并且可以增强气体进化反应的活性和稳定性。然后,我们在各种最近报告的地球上的3D纳米阵列双功能电催化剂的碱性介质中审查了碱性水分的稳定性(包括<= 1.49V)和稳定性(包括> = 100h)。后来,我们审查了具有掺杂金属/杂原子的纳米阵列,双金属/多金属材料,金属氧化物,金属磷化物/磷酸盐,金属氮化物,碳,无定形材料,金属硫属元素(金属硫化物和硒化物)的高效策略,CoreShell / Hetero /中空结构,空位/缺陷和匹配的电极对,以实现有效的整体水分裂。然后,我们审查了酸性介质中高效整体水分的纳米阵列双官能电催化剂的构建。最后,我们讨论了水电解中的气体分离。

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