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首页> 外文期刊>ACS Omega >Electrochemically Identified Ultrathin Water-Oxidation Catalyst in Neutral pH Solution Containing Ni2+ and Its Combination with Photoelectrode
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Electrochemically Identified Ultrathin Water-Oxidation Catalyst in Neutral pH Solution Containing Ni2+ and Its Combination with Photoelectrode

机译:Ni 2 + 的中性pH溶液中电化学鉴定的超薄水氧化催化剂及其与光电极的结合

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摘要

Water oxidation electrocatalyzed by Ni~(2+) under neutral conditions was investigated using various electrochemical analyses. The addition of Ni~(2+) in a phosphate-buffered solution catalyzed the oxidation of water, as confirmed by the detection of oxygen generation via scanning electrochemical microscopy. A combination of cyclic voltammetry, coulometric titration, and electrochemical quartz microbalance measurements identified the catalysis as heterogeneous and the catalyst as a Ni-based ultrathin (<4 nm) layer (“Ni-Pi”). Analysis of the potential- and pH-dependency of the titrated amount of charge revealed that the catalyst was deposited only under anodic polarization conditions and was removed under unpolarized conditions; the catalyst may be Ni(III) oxide, and its formation and oxidation appeared to be chemically irreversible. The diffusion-limited nature of water oxidation catalyzed by Ni~(2+) was closely related to the phosphate ions involved in the catalyst formation and the accompanying catalysis. Although the catalytic performance of Ni~(2+) alone was not remarkable, it exhibited a synergetic effect with BiVO_(4) for photoelectrochemical water oxidation, which can compete with Co-Pi-decorated BiVO_(4).
机译:利用多种电化学分析方法研究了Ni〜(2+)在中性条件下电催化的水氧化反应。 Ni-(2+)在磷酸盐缓冲溶液中的加入可催化水的氧化,这已通过扫描电化学显微镜检测到氧气的产生得到证实。循环伏安法,库仑滴定法和电化学石英微量天平测量相结合,确定催化剂为非均相催化剂,催化剂为镍基超薄(<4 nm)层(“ Ni-Pi”)。对滴定电荷量的电势和pH依赖性的分析表明,该催化剂仅在阳极极化条件下沉积,而在非极化条件下被除去。催化剂可以是Ni(III)氧化物,其形成和氧化在化学上是不可逆的。 Ni〜(2+)催化的水氧化的扩散受限特性与参与催化剂形成及伴随的催化作用的磷酸根离子密切相关。尽管单独的Ni〜(2+)的催化性能不明显,但它与BiVO_(4)协同发挥光电化学水氧化作用,可以与Co-Pi装饰的BiVO_(4)竞争。

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