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金属有机骨架衍生的自支撑Co_(9)S_(8)/Ni_(3)S_(2)纳米片阵列用于高效电催化分解水性能研究 被引量:4
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作者 覃彪 郭芬岈 黎挺挺 《化学试剂》 CAS 北大核心 2021年第11期1480-1485,共6页
采用简单、可控的阳离子交换法和水热法在导电基底上成功构筑了具有自支撑纳米片阵列结构的Co_(9)S_(8)/Ni_(3)S_(2)电催化剂,在碱性电解液(1 mol/L KOH)中,采用三电极体系分别研究了Co_(9)S_(8)/Ni_(3)S_(2)的电催化析氧和析氢性能。... 采用简单、可控的阳离子交换法和水热法在导电基底上成功构筑了具有自支撑纳米片阵列结构的Co_(9)S_(8)/Ni_(3)S_(2)电催化剂,在碱性电解液(1 mol/L KOH)中,采用三电极体系分别研究了Co_(9)S_(8)/Ni_(3)S_(2)的电催化析氧和析氢性能。在析氧性能测试中,Co_(9)S_(8)/Ni_(3)S_(2)/NF电催化剂获取50、100 mA/cm^(2)的催化电流密度所需要的过电位仅为230、280 mV。而在析氢性能测试中,Co_(9)S_(8)/Ni_(3)S_(2)/NF电催化剂获取-100 mA/cm^(2)的催化析氢电流密度所需的过电位仅为129 mV,同时该催化剂表现出了优异的电催化稳定性,其优异的电催化性能归因于其自支撑纳米片阵列结构,可提供更多的活性位点。 展开更多
关键词 电催化 水分解 金属有机骨架前驱体 金属硫化物 自支撑电极
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Structure and denitration performance of carbon-based catalysts prepared from Cu-BTC precursor 被引量:8
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作者 Li ZHANG Lei HUANG +1 位作者 Yi-hong QIN Bai-zhen CHEN 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2018年第5期980-988,共9页
Using Cu-BTC prepared by hydrothermal method as precursor, carbon-based catalysts were obtained as model materials for low-temperature DeNO_x. These catalysts were characterized by X-ray diffractometry(XRD), Raman s... Using Cu-BTC prepared by hydrothermal method as precursor, carbon-based catalysts were obtained as model materials for low-temperature DeNO_x. These catalysts were characterized by X-ray diffractometry(XRD), Raman spectroscopy, scanning electron microscopy(SEM) and energy dispersive X-ray spectrometry(EDS). The results showed that all carbon-based catalysts held the octahedron shape of Cu-BTC in most parts, and they mainly consisted of face-centered cubic copper. CuO_x/C exhibited excellent catalytic activity, and such catalytic activity was further improved with the introduction of Ag. The catalyst with a Cu to Ag mole ratio of 6:1 and an activated temperature of 600 °C showed the best catalytic performance, and its catalytic denitration rate reached 100% at a temperature as low as 235 °C. During the catalytic reaction process, Cu~+ mainly played a catalytic role. 展开更多
关键词 metal organic frameworks Cu-BTC precusor carbon-based catalyst low-temperature denitzaion CO
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