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Amorphous Nickel-Based Thin Film As a Janus Electrocatalyst for Water Splitting

机译:非晶态镍基薄膜作为水分解的Janus电催化剂

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Hydrogen generated by water splitting provides a renewable energy source, but development of materials vnth efficient electrocatalytic water splitting capability is challenging. Thin-film electrocatalytic material (H2-NiCat) with robust water reduction properties, which can be readily prepared by a reduction-induced electrodeposition method from nickel salts in a borate-buffered electrolyte (pH 9.2), is reported. The material consists of nanoparticles with nickel oxide or hydroxide species located at the surface and metallic nickel in the bulk. The catalyst mediates H2 evolution in a near-neutral aqueous buffer at low overpotential. The catalyst requires a subsequent oxidative pretreatment in order to attain a well-defined hydrogen evolution reaction (HER) activity, and the 1.5 h anodized catalyst film exhibits a HER current density of about 1.50 mA cm~(-2) at 0.452 V overpotential over a period of 24 h with no observable con-osion. In addition, it can be converted by anodic equilibration into an amorphous Ni-based oxide film (O2-NiCat) to catalyze O2 evolution, and the switch between the two catalytic forms is fixlly reversible. The robust, bifunctional, switchable, and noble-metal-liee catalytic material has immense potential in artificial solar water-sphtting devices.
机译:水分解产生的氢提供了可再生能源,但是利用有效的电催化水分解能力来开发材料是具有挑战性的。据报道,具有很强的减水性能的薄膜电催化材料(H2-NiCat)可以很容易地通过还原诱导电沉积法从硼酸盐缓冲的电解液(pH 9.2)中的镍盐中制备。该材料由位于表面的具有氧化镍或氢氧化物的纳米颗粒和整体中的金属镍组成。催化剂在低超电势下在接近中性的水缓冲液中介导H2的逸出。催化剂需要进行后续的氧化预处理才能获得明确的氢释放反应(HER)活性,并且1.5 h阳极氧化的催化剂膜在0.452 V的超电势下显示出约1.50 mA cm〜(-2)的HER电流密度。 24小时内未见明显不适。此外,可以通过阳极平衡将其转换为非晶态的基于Ni的氧化膜(O2-NiCat),以催化O2的逸出,并且两种催化形式之间的转换是固定可逆的。坚固,双功能,可切换的贵金属碱催化材料在人造太阳能水阻装置中具有巨大的潜力。

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