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Nitrogen and fluorine dual-doped porous graphene-nanosheets as efficient metal-free electrocatalysts for hydrogen-evolution in acidic media

机译:氮、氟dual-doped多孔graphene-nanosheets高效不含金属的electrocatalysts释氢的酸性媒体

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摘要

Nitrogen and fluorine dual-doped porous graphene-nanosheets (NFPGNS) with pyridinic N doped rich configurations have been synthesized by a simple ion adsorption and chemical-etching method. Higher graphitization degree of NFPGNS was in favor of charge transfer and mass transfer. Moreover, higher surface areas and various pore structures of NFPGNS were found to be beneficial for the accessment of active sites. Therefore, efficient catalytic activity towards the hydrogen evolution reaction ( HER) with the onset overpotential of only similar to 150 mV and superior stability has been investigated on the NFPGNS electrocatalysts. Doping of F evidently promotes the catalytic activity of N containing carbon materials for the HER. Further density functional theory (DFT) calculations have revealed the heteroatoms multi-doping effect on NFPGNS that leads to a lowest Gibbs free energy and stronger strength of H adsorption, thereby favoring the HER catalytic activity.
机译:氮、氟dual-doped多孔graphene-nanosheets (NFPGNS) pyridinic N已经合成了掺杂丰富配置通过一个简单的离子吸附和化学腐蚀方法。电荷转移和质量转移。不同孔隙结构的NFPGNS被发现活动网站的评价是有益的。因此,高效的催化活性氢反应(她)进化出现过电压的类似于150 mV优越的稳定性一直在调查NFPGNS electrocatalysts。促进含N的催化活性碳材料。泛函理论(DFT)计算揭示了杂原子multi-doping效应NFPGNS导致吉布斯自由能最低和更强的H吸附强度,从而支持她的催化活性。

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