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PtAg 骨架催化甘油选择性电氧化制备二羟基丙酮

Selective Electro-Oxidation of Glycerol to Dihydroxyacetone by PtAg Skeletons.

作者信息

Zhou Yongfang, Shen Yi, Xi Jingyu, Luo Xuanli

机构信息

School of Food Science and Engineering , South China University of Technology , Guangzhou 510640 , China.

Overseas Expertise Introduction Center for Discipline Innovation of Food Nutrition and Human Health (111 Center) , Guangzhou 510640 , China.

出版信息

ACS Appl Mater Interfaces. 2019 Aug 14;11(32):28953-28959. doi: 10.1021/acsami.9b09431. Epub 2019 Jul 31.

Abstract

Developing high-performance electrocatalysts for the selective conversion of glycerol into value-added chemicals is of great significance. Herein, three-dimensional nanoporous PtAg skeletons were studied as catalysts for the electro-oxidation of glycerol. The structural features of the PtAg skeletons were revealed by electron microscopy, X-ray diffraction, X-ray photoelectron spectroscopy, and UV-vis spectroscopy. The electrochemical activity of the catalysts was examined by cyclic voltammetry, linear sweeping voltammetry, and chronoamperometry. The resulting PtAg skeletons exhibit a peak current density of 7.57 mA cm, which is 15.4-fold higher than that of Pt/C, making the PtAg skeletons one of the best electrocatalysts for glycerol oxidation. High-performance liquid chromatography results show that the PtAg skeletons yield a remarkable dihydroxyacetone selectivity of 82.6%, which has so far been the second largest value reported in the literature. The superior activity and selectivity of the PtAg skeletons are ascribed to the large surface area and abundant Pt(111) facets. Additionally, the effects of glycerol and KOH concentrations and reaction time on product selectivity were investigated.

摘要

开发用于将甘油选择性转化为高附加值化学品的高性能电催化剂具有重要意义。在此,研究了三维纳米多孔PtAg骨架作为甘油电氧化的催化剂。通过电子显微镜、X射线衍射、X射线光电子能谱和紫外可见光谱揭示了PtAg骨架的结构特征。通过循环伏安法、线性扫描伏安法和计时电流法检测了催化剂的电化学活性。所得的PtAg骨架表现出7.57 mA cm的峰值电流密度,比Pt/C高15.4倍,使PtAg骨架成为甘油氧化的最佳电催化剂之一。高效液相色谱结果表明,PtAg骨架产生了高达82.6%的显著二羟基丙酮选择性,这是迄今为止文献报道的第二大值。PtAg骨架的优异活性和选择性归因于其大表面积和丰富的Pt(111)晶面。此外,还研究了甘油和KOH浓度以及反应时间对产物选择性的影响。

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