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Bi_(2)O_(3)/MoS_(2)复合材料的制备及析氧性能研究 被引量:1
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作者 王培培 钟文贺 +5 位作者 周佳伟 刘刚 顾雷香 祝政华 程小芳 丹媛媛 《化学研究与应用》 CAS CSCD 北大核心 2021年第8期1440-1447,共8页
二维材料MoS_(2)有良好的催化性能,但由于其原始状态是块状的,平面结构为催化惰性,活性位点高度集中于边缘位置,为了提高二维材料MoS_(2)的催化性能,我们利用水热法成功地制备了阶梯式边缘型花状的二硫化钼基电催化剂(Bi_(2)O_(3)/MoS_(... 二维材料MoS_(2)有良好的催化性能,但由于其原始状态是块状的,平面结构为催化惰性,活性位点高度集中于边缘位置,为了提高二维材料MoS_(2)的催化性能,我们利用水热法成功地制备了阶梯式边缘型花状的二硫化钼基电催化剂(Bi_(2)O_(3)/MoS_(2)),通过X射线衍射(XRD)、扫描电子显微镜(SEM)和透射电子显微镜(TEM)对其组成、结构和形貌进行了表征,并对其作为析氧反应(OER)的电化学催化剂进行了性能测试。结果表明,该催化剂具有阶梯式边缘型纳米花的特殊结构,可以使其暴露出更多的活性位点,增加了导电性,并降低了其固有电阻,具有较好的催化活性。在1 mol·L^(-1) KOH溶液中,Bi_(2)O_(3)/MoS_(2)复合物具有最佳的电解水OER催化性能,在10mA/cm^(2)的过电位为798 mV,比Bi_(2)O_(3)降低150 mV左右,比MoS_(2)降低60 mV,Tafel斜率最小,具有良好的催化前景。 展开更多
关键词 析氧反应 三氧化二铋 二硫化钼复合物
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Facile Synthesis of Layered Sodium Manganese Oxide for Application in Asymmetric Supercapacitor
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作者 LIU Xu TENG Teng +7 位作者 gu lei-xiang GE Li-Chao HE Wen LIAO Hui-Yong CHE Yi-Jun LIANG Chong-Yao DAN Yuan-Yuan CHEN Li-Zhuang 《Chinese Journal of Structural Chemistry》 SCIE CAS CSCD 2020年第4期756-764,共9页
Layered sodium manganese oxides(LSMOs),with two-dimensional channels for ion diffusion,have been regarded as the promising electrode materials in the application of asymmetric supercapacitors(ASCs).In this work,the la... Layered sodium manganese oxides(LSMOs),with two-dimensional channels for ion diffusion,have been regarded as the promising electrode materials in the application of asymmetric supercapacitors(ASCs).In this work,the layered Na0.5Mn2O4·1.5H2O was synthesized through a facile hydrothermal method by controlling the molar ratio of sodium and manganese.When the molar ratio of sodium to manganese is 3:1,Na0.5Mn2O4·1.5H2O has shown the best capacitance of 369 F/g with current density of 0.5 A/g,and maintained a capacitance of 265 F/g after 2000 cycles.The asymmetric supercapacitor consists of the sodium manages oxides as the positive electrode and active carbon(AC)as the negative electrode in 1 mol/L Na2SO4 solution.The voltage of the asymmetric supercapacitor has been expanded to 0~2 V with an energy density of 10.13 Wh/kg at a power density of 500 W/kg based on the total weight of both active electrode materials when the mass ratio of AC to Na0.5Mn2O4·1.5H2O was 3:1. 展开更多
关键词 layered sodium manganese oxides asymmetric supercapacitor electrochemical performance
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