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聚[Ni()]膜包裹的Ni(OH)纳米颗粒上甲醇、乙醇和甘油的电催化氧化

Electrocatalytic Oxidation of Methanol, Ethanol, and Glycerol on Ni(OH) Nanoparticles Encapsulated with Poly[Ni()] Film.

作者信息

Bott-Neto José L, Martins Thiago S, Machado Sérgio A S, Ticianelli Edson A

机构信息

São Carlos Institute of Chemistry , University of São Paulo , P. O. Box 780, São Carlos 13560-970 , São Paulo , Brasil.

出版信息

ACS Appl Mater Interfaces. 2019 Aug 28;11(34):30810-30818. doi: 10.1021/acsami.9b08441. Epub 2019 Aug 14.

Abstract

This study describes a systematic investigation of the electrocatalytic activity of poly[Ni()] films, as catalysts for the electro-oxidation of Cn alcohols (Cn = methanol, ethanol, and glycerol) in alkaline medium. The [Ni()] complex was electropolymerized on a glassy carbon surface and electrochemically activated in NaOH solution by cyclic voltammetry. X-ray diffraction, transmission electron microscopy, and X-ray photoelectron spectroscopy results indicate that during the activation step the polymeric film hydrolyzes, leading to the formation of β-Ni(OH) spherical nanoparticles, with an average size of 2.4 ± 0.5 nm, encapsulated with the poly[Ni()] film. Electrochemical results obtained together with the in situ Fourier transform infrared spectroscopy confirm that the electro-oxidation of methanol, ethanol, and glycerol occurs by involving a cycling oxidation of β-Ni(OH) with the formation of β-NiOOH species, followed by the charge transfer to the alcohols, which regenerates β-Ni(OH). Analyses of the oxidation products at low potentials indicate that the major product obtained during the oxidation of methanol and glycerol is the formate, while the oxidation of ethanol leads to the formation of acetate. On the other hand, at high potentials ( = 0.6 V), there is evidence that the oxidation of Cn alcohols leads to carbonate ions as an important product.

摘要

本研究描述了对聚[Ni()]薄膜电催化活性的系统研究,该薄膜作为碱性介质中Cn醇(Cn = 甲醇、乙醇和甘油)电氧化的催化剂。[Ni()]配合物在玻碳表面进行电聚合,并通过循环伏安法在NaOH溶液中进行电化学活化。X射线衍射、透射电子显微镜和X射线光电子能谱结果表明,在活化步骤中,聚合物薄膜发生水解,导致形成β-Ni(OH)球形纳米颗粒,其平均尺寸为2.4±0.5 nm,被聚[Ni()]薄膜包裹。结合原位傅里叶变换红外光谱获得的电化学结果证实,甲醇、乙醇和甘油的电氧化通过β-Ni(OH)的循环氧化形成β-NiOOH物种,随后电荷转移至醇类,从而使β-Ni(OH)再生。低电位下氧化产物的分析表明,甲醇和甘油氧化过程中获得的主要产物是甲酸盐,而乙醇的氧化导致乙酸盐的形成。另一方面,在高电位(= 0.6 V)下,有证据表明Cn醇的氧化会产生碳酸根离子作为重要产物。

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