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MoS_2/核桃壳活性炭复合纳米材料的制备及其电催化析氢性能研究 被引量:3
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作者 李凯迪 王思佳 +6 位作者 朱鑫瑞 袁思杰 程雪纯 吴浩然 高阳光 徐书珏 杜记民 《化工新型材料》 CAS CSCD 北大核心 2019年第4期71-75,共5页
以钼酸铵为钼源、硫脲为硫源,使用核桃壳活性炭通过水热法成功制备二硫化钼(MoS_2)/核桃壳活性炭复合纳米材料。研究了MoS_2含量对复合纳米材料形貌、尺寸及电化学性能的影响,通过X射线粉末衍射仪、冷场发射扫描电子显微镜、比表面积及... 以钼酸铵为钼源、硫脲为硫源,使用核桃壳活性炭通过水热法成功制备二硫化钼(MoS_2)/核桃壳活性炭复合纳米材料。研究了MoS_2含量对复合纳米材料形貌、尺寸及电化学性能的影响,通过X射线粉末衍射仪、冷场发射扫描电子显微镜、比表面积及孔隙度分析仪、线性扫描伏安法对复合纳米材料的结构、形貌、电化学性能进行分析和表征。结果表明,MoS_2质量分数为80%的MoS_2/核桃壳活性炭复合纳米材料的电催化析氢反应活性最好。 展开更多
关键词 二硫化钼 活性炭 水热法 负载 电催化析氢反应
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Electronic Communication Between Co and Ru Sites Decorated on Nitrogen-Doped Carbon Nanotubes Boosting the Alkaline Hydrogen Evolution Reaction
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作者 Meng-Ting Gao Ying Wei +8 位作者 Xue-Meng Hu Wenj-Jie Zhu Qing-Qing Liu Jin-Yuan Qiang Wan-Wan Liu Ying Wang Xu Li Jian-Feng Huang Yong-Qiang Feng 《电化学(中英文)》 CAS 北大核心 2024年第9期1-9,共9页
Designing highly efficient Pt-free electrocatalysts with low overpotential for an alkaline hydrogen evolution reaction(HER)remains a significant challenge.Here,a novel and efficient cobalt(Co),ruthenium(Ru)bimetallic ... Designing highly efficient Pt-free electrocatalysts with low overpotential for an alkaline hydrogen evolution reaction(HER)remains a significant challenge.Here,a novel and efficient cobalt(Co),ruthenium(Ru)bimetallic electrocatalyst composed of CoRu nanoalloy decorated on the N-doped carbon nanotubes(CoRu@N-CNTs),was prepared by reacting fullerenol with melamine via hydrothermal treatment and followed by pyrolysis.Benefiting from the electronic communication between Co and Ru sites,the as-obtained CoRu@N-CNTs catalyst exhibited superior electrocatalytic HER activity.To deliver a current density of 10 mA·cm^(-2),it required an overpotential of merely 19 mV along with a Tafel slope of 26.19 mV·dec^(-1)in 1 mol·L^(-1)potassium hydroxide(KOH)solution,outperforming the benchmark Pt/C catalyst.The present work would pave a new way towards the design and construction of an efficient electrocatalyst for energy storage and conversion. 展开更多
关键词 CoRu alloy ELECTROCATALYST Water splitting Hydrogen evolution reaction Carbon nanotubes
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