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Mechanistic study of nickel based catalysts for oxygen evolution and methanol oxidation in alkaline medium

机译:镍基碱性介质中析氧和甲醇氧化催化剂的机理研究

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Nickel based catalysts have been studied as catalysts for either organic compound (especially methanol) oxidation or oxygen evolution reactions in alkaline medium for decades, but methanol oxidation and oxygen evolution reactions occur at a similar potential range and pH with nickel based catalysts. In contrast to previous studies, we studied these two reactions simultaneously under various pH and methanol concentrations with electrodes containing a series of NiOOH surface concentrations. We found that nickel based catalysts are more suitable to be used as oxygen evolution catalysts than methanol oxidation catalysts based on the observation that: The rate-determining step of methanol oxidation involves NiOOH, OH- and methanol while high methanol to OH- ratio could poison the NiOOH sites. Since NiOOH is involved in the rate-determining step, methanol oxidation suffers from high over-potential and oxygen evolution is favored over methanol oxidation in the presence of an equivalent amount (0.1 M) of alkali and methanol. (C) 2015 Elsevier B.V. All rights reserved.
机译:已经研究了镍基催化剂作为在碱性介质中用于有机化合物(特别是甲醇)氧化或氧气析出反应的催化剂,但与镍基催化剂相比,甲醇氧化和氧气析出反应在相似的电位范围和pH下发生。与以前的研究相反,我们在含有各种NiOOH表面浓度的电极下,在各种pH和甲醇浓度下同时研究了这两个反应。基于以下观察结果,我们发现镍基催化剂比甲醇氧化催化剂更适合用作析氧催化剂:甲醇氧化的速率确定步骤涉及NiOOH,OH-和甲醇,而高甲醇与OH-比可能会毒化NiOOH网站。由于NiOOH参与了速率确定步骤,因此在等量(0.1 M)的碱和甲醇存在下,甲醇氧化易受高过电势的影响,并且比甲醇氧化更易产生氧气。 (C)2015 Elsevier B.V.保留所有权利。

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