Electrocatalytic Conversion of Glycerol to Oxalate on Ni Oxide Nanoparticles-Modified Oxidized Multiwalled Carbon Nanotubes

被引:99
作者
Morales, Dulce M. [1 ,2 ]
Jambrec, Daliborka [1 ]
Kazakova, Mariya A. [3 ]
Braun, Michael [4 ,5 ]
Sikdar, Nivedita [1 ]
Koul, Adarsh [1 ]
Brix, Ann Cathrin [1 ]
Seisel, Sabine [1 ]
Andronescu, Corina [4 ,5 ]
Schuhmann, Wolfgang [1 ]
机构
[1] Ruhr Univ Bochum, Analyt Chem, Ctr Electrochem Sci CES, D-44780 Bochum, Germany
[2] Mat & Energie GmbH, Nachwuchsgrp Gestaltung Sauerstoffentwicklungsmec, Helmholtz Zentrum Berlin, Hahn Meitner Pl 1, D-14109 Berlin, Germany
[3] SB RAS, Boreskov Inst Catalysis, Novosibirsk 630090, Russia
[4] Univ Duisburg Essen, Chem Technol 3, Fac Chem, D-47057 Duisburg, Germany
[5] Univ Duisburg Essen, CENIDE Ctr Nanointegrat, D-47057 Duisburg, Germany
关键词
glycerol oxidation; nickel oxide; multiwalled carbon nanotubes; hydrogen production; value-added chemicals; oxalic acid; HYDROGEN-PRODUCTION; OXYGEN EVOLUTION; OXIDATION; NICKEL; WATER; ELECTROOXIDATION; ELECTRODE; ETHANOL; HYDROXIDE; CHEMICALS;
D O I
10.1021/acscatal.1c04150
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Electrocatalytic oxidation of glycerol (GOR) as the anode reaction in water electrolysis facilitates the production of hydrogen at the cathode at a substantially lower cell voltage compared with the oxygen evolution reaction. It simultaneously provides the basis for the production of value-added compounds at the anode. We investigate earth-abundant transition-metal oxide nanoparticles (Fe, Ni, Mn, Co) embedded in multiwalled carbon nanotubes as GOR catalysts. Out of the four investigated composites, the Ni-based catalyst exhibits the highest catalytic activity toward the GOR according to rotating disk electrode voltammetry, reaching a current density of 10 mA cm(-2) already at 1.31 V vs RHE, a potential below the formation of Ni3+. Chronoamperometry conducted in a flow-through cell followed by HPLC analysis is used to identify and quantify the GOR products over time, revealing that the applied potential, electrolyte concentration, and duration of the experiment impact strongly the composition of the products' mixture. Upon optimization, the GOR is directed toward oxalate production. Moreover, oxalate is not further converted and hence accumulates as a major organic product under the chosen conditions in a concentration ratio of 60:1 with acetate as a minor product after 48 h electrolysis in 7 M KOH, which represents a promising route for the synthesis of this highly valued product.
引用
收藏
页码:982 / 992
页数:11
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