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Synthesis of transition metal sulfide and reduced graphene oxide hybrids as efficient electrocatalysts for oxygen evolution reactionsopen access

Authors
Hong, Yu-RimMhin, SungwookKwon, JiseokHan, Won-SikSong, TaeseupHan, HyukSu
Issue Date
Sep-2018
Publisher
ROYAL SOC
Keywords
electrocatalyst; water splitting; oxygen evolution reaction; cobalt nickel sulfide; reduced graphene oxide; nanocomposites
Citation
ROYAL SOCIETY OPEN SCIENCE, v.5, no.9
Indexed
SCIE
SCOPUS
Journal Title
ROYAL SOCIETY OPEN SCIENCE
Volume
5
Number
9
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/3318
DOI
10.1098/rsos.180927
ISSN
2054-5703
Abstract
The development of electrochemical devices for renewable energy depends to a large extent on fundamental improvements in catalysts for oxygen evolution reactions (OERs). OER activity of transition metal sulfides (TMSs) can be improved by compositing with highly conductive supports possessing a high surface-to-volume ratio, such as reduced graphene oxide (rGO). Herein we report on the relationship between synthetic conditions and the OER catalytic properties of TMSs and rGO (TMS–rGO) hybrids. Starting materials, reaction temperature and reaction time were controlled to synergistically boost the OER catalytic activity of TMS–rGO hybrids. Our results showed that (i) compared with sulfides, hydroxides are favourable as starting materials to produce the desired TMS–rGO hybrid nanostructure and (ii) high reaction temperatures and longer reaction times can increase physico-chemical interaction between TMSs and rGO supports, resulting in highly efficient OER catalytic activity.
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