石墨烯
氧化物
材料科学
析氧
催化作用
分解水
纳米颗粒
双功能
气凝胶
煅烧
聚吡咯
纳米复合材料
电催化剂
制氢
化学工程
纳米技术
无机化学
电化学
化学
复合材料
冶金
电极
光催化
物理化学
有机化学
聚合物
工程类
聚合
作者
Xuyun Gao,Jing Chen,Xuzhuo Sun,Baofan Wu,Bo Li,Zhichao Ning,Jun Li,Ning Wang
标识
DOI:10.1021/acsanm.0c02739
摘要
Engineering nanocomposites with interfaces was already found to be an efficient method for designing water-splitting catalysts. In this study, a rationally designed 3D Ru/RuO2@N-rGO hierarchical porous heterocatalyst containing abundant interfaces was obtained via a hydrothermal-calcining strategy for the oxygen evolution reaction (OER) and the hydrogen evolution reaction (HER). In the synthesis process, polypyrrole helped the self-assembled GO to form a hybrid aerogel network, in situ reducing the Ru salt as reductant and doping graphene as N precursor. CO2, which was in situ produced via the reaction between Na2SO4 and C, could partially or totally oxidize metal Ru to regulate the composition of Ru/RuO2 nanoparticles. Benefiting from the large surface area and a high number of bifunctional active sites coupled interfaces, the as-obtained Ru/RuO2@N-rGO heterostructure catalyst revealed high HER/OER activities in 1.0 M KOH and 0.5 M H2SO4 solutions, respectively. The present work could provide a way to engineer Ru/RuO2 nanoparticles in 3D electrocatalysts to boost HER/OER performances.
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