石墨烯
纳米孔
材料科学
掺杂剂
纳米技术
兴奋剂
制氢
电化学
电阻率和电导率
催化作用
电导率
导电体
化学工程
基质(水族馆)
氢
无机化学
电极
化学
光电子学
复合材料
有机化学
物理化学
工程类
地质学
电气工程
海洋学
作者
Linghan Chen,Jiuhui Han,Yoshikazu Ito,Takeshi Fujita,Gang Huang,Kailong Hu,Akihiko Hirata,Kentaro Watanabe,Pan Liu
标识
DOI:10.1002/anie.201809315
摘要
Heavy chemical doping and high electrical conductivity are two key factors for metal-free graphene electrocatalysts to realize superior catalytic performance toward hydrogen evolution. However, heavy chemical doping usually leads to the reduction of electrical conductivity because the catalytically active dopants give rise to additional electron scattering and hence increased electrical resistance. A hierarchical nanoporous graphene, which is comprised of heavily chemical doped domains and a highly conductive pure graphene substrate, is reported. The hierarchical nanoporous graphene can host a remarkably high concentration of N and S dopants up to 9.0 at % without sacrificing the excellent electrical conductivity of graphene. The combination of heavy chemical doping and high conductivity results in high catalytic activity toward electrochemical hydrogen production. This study has an important implication in developing multi-functional electrocatalysts by 3D nanoarchitecture design.
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