Carbon-Graphene hybrid supporting Platinum-Tin electrocatalyst to enhance ethanol oxidation reaction

Author:

Bastos Tarso L.1,Gelamo Rogério V.2,Colmati Flavio1

Affiliation:

1. Universidade Federal de Goiás, Instituto de Química

2. Universidade Federal do Triângulo Mineiro

Abstract

Abstract Direct ethanol fuel cell (DEFC) is promising source for mobile and portable applications, but the electrocatalysts are based on metal noble alloys or doping elements to minimize the incomplete ethanol oxidation and poisoning effect. While the main problem persists, this study describes the enhancement of ethanol oxidation reaction by adding graphene (G) to Vulcan XC-72R carbon black (C) metal support, with different C/G ratios. The Graphene were prepared from exfoliated graphite following dry in cool plasma under vacuum. The 60 wt% graphene hybrid support enhances the current density at 5% cyclic voltammetry (CV) and 127% chronoamperometry (CA) higher than carbon pure support in acid electrolyte. Whereas in alkaline, graphene (60 wt%) showed the highest electrochemical activity with an increase of current 82% (CV) and 130% (CA). Therefore, we demonstrated the enhancement of the catalyst electrochemical activity in both electrolytes through a simple synthesis method. The 40 wt% carbon and 60 wt% graphene hybrid support achieving higher performance in ethanol oxidation, evidencing a potential application in DEFC.

Publisher

Research Square Platform LLC

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