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Durable hierarchical phosphorus‐doped biphase MoS_(2)electrocatalysts with enhanced H^(*)adsorption
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作者 Yongteng Qian Jianmin Yu +4 位作者 Zhiyi Lyu Qianwen Zhang Tae Hyeong Lee Huan Pang Dae Joon Kang 《Carbon Energy》 SCIE EI CAS CSCD 2024年第4期104-114,共11页
Phase engineering is an efficient strategy for enhancing the kinetics of electrocatalytic reactions.Herein,phase engineering was employed to prepare high‐performance phosphorous‐doped biphase(1T/2H)MoS_(2)(P‐BMS)na... Phase engineering is an efficient strategy for enhancing the kinetics of electrocatalytic reactions.Herein,phase engineering was employed to prepare high‐performance phosphorous‐doped biphase(1T/2H)MoS_(2)(P‐BMS)nanoflakes for hydrogen evolution reaction(HER).The doping of MoS_(2)with P atoms modifies its electronic structure and optimizes its electrocatalytic reaction kinetics,which significantly enhances its electrical conductivity and structural stability,which are verified by various characterization tools,including X‐ray photoelectron spectroscopy,high‐resolution transmission electron microscopy,X‐ray absorption near‐edge spectroscopy,and extended X‐ray absorption fine structure.Moreover,the hierarchically formed flakes of P‐BMS provide numerous catalytic surface‐active sites,which remarkably enhance its HER activity.The optimized P‐BMS electrocatalysts exhibit low overpotentials(60 and 72 mV at 10 mA cm^(−2))in H_(2)SO_(4)(0.5 M)and KOH(1.0 M),respectively.The mechanism of improving the HER activity of the material was systematically studied using density functional theory calculations and various electrochemical characterization techniques.This study has shown that phase engineering is a promising strategy for enhancing the H*adsorption of metal sulfides. 展开更多
关键词 1T/2h MoS_(2) density functional theory ELECTROCATALYSTS phase engineering phosphorous doping
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1T/2H-二硫化钼的制备及其电析氢性能研究
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作者 司华艳 刘彩红 《石家庄学院学报》 CAS 2022年第3期40-45,共6页
二硫化钼作为一种天然二维材料,对于取代贵金属铂基催化剂进行析氢反应具有巨大的潜力.然而电导率较差和本征活性低限制了其在析氢反应中的应用.通过探索前驱体铵源和钼源的比例和加入丙酸含量的影响,制备了具有更多活性位点和更高电导... 二硫化钼作为一种天然二维材料,对于取代贵金属铂基催化剂进行析氢反应具有巨大的潜力.然而电导率较差和本征活性低限制了其在析氢反应中的应用.通过探索前驱体铵源和钼源的比例和加入丙酸含量的影响,制备了具有更多活性位点和更高电导率的1T/2H-二硫化钼,并对其电析氢反应性能进行了测试.结果表明:1T/2H-二硫化钼的电析氢性能较2H-二硫化钼有极大的优势,效率更高. 展开更多
关键词 1T/2h 二硫化钼 电析氢性能
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