Litcius/Paper detail

Highly Active Hollow RhCu Nanoboxes toward Ethylene Glycol Electrooxidation

Bin Qiao, Ting Yang, Shufeng Shi, Nan Jia, Yu Chen, Xinbing Chen, Zhongwei An, Pei Chen

2021Small78 citationsDOI

Abstract

Abstract The efficient electrocatalysts toward the ethylene glycol oxidation reaction (EGOR) are highly desirable for direct ethylene glycol fuel cells because of the sluggish kinetics of anodic EGOR. Herein, porous RhCu nanoboxes are successfully prepared through facile galvanic replacement reaction and succedent sodium borohydride reduction strategy. Benefiting from hierarchical pore structure, RhCu nanoboxes display excellent electrocatalytic performance toward the EGOR in alkaline medium with a mass activity of 775.1 A g Rh −1 , which is 2.8 times as large as that of commercial Rh nanocrystals. Moreover, the long‐term stability of RhCu nanoboxes is better than that of commercial Rh nanocrystals. Furthermore, the theoretical calculations demonstrate that RhCu nanoboxes possess lower adsorption energy of CO and lower reaction barrier (0.27 eV) for the CO ads oxidation with aid of the adsorbed OH ads species, resulting in the outstanding electrocatalytic performance toward the EGOR. This work provides a meaningful reference for developing highly effective electrocatalysts toward the EGOR.

Topics & Concepts

Ethylene glycolSodium borohydrideMaterials scienceAnodeAdsorptionRedoxGalvanic cellChemical engineeringNanocrystalCatalysisKineticsElectrocatalystNanotechnologyCombinatorial chemistryElectrochemistryChemistryOrganic chemistryElectrodeMetallurgyPhysical chemistryEngineeringQuantum mechanicsPhysicsElectrocatalysts for Energy ConversionCatalytic Processes in Materials ScienceSupercapacitor Materials and Fabrication