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Conductive Leaflike Cobalt Metal-Organic Framework Nanoarray on Carbon Cloth as a Flexible and Versatile Anode toward Both Electrocatalytic Glucose and Water Oxidation | |
Wei, Ziyi; Zhu, Wenxin; Li, Yinge; Ma, Yiyue; Wang, Jing; Hu, Na; Suo, Yourui; Wang, Jianlong | |
2018 | |
发表期刊 | INORGANIC CHEMISTRY |
卷号 | 57期号:14 |
摘要 | Transition metal-organic frameworks (MOFs), on account of their unique inherent properties of large pore volume, high specific surface area, tunable pores, and good catalytic activity, have been highly regarded as superior catalysts recently for water electrolysis, super capacitors, batteries, sensors, and so on. Herein, we report on a cobalt MOF phase with 3D well-aligned nanosheets array if architecture on carbon cloth (Co-MOF NS/CC), fabricated by a facile ambient liquid-phase deposition, could serve as a self-standing Janus catalytic electrode toward both glucose and water oxidation. It shows good glucose-sensing performance with low determination limit and large detection range. Also, it exhibits high water-oxidation efficiency with low overpotential and good durability. This work demonstrates the potential of utilizing transition-metal based well-aligned MOF nanoarrays for electrocatalytic oxidation. |
文献类型 | 期刊论文 |
条目标识符 | http://210.75.249.4/handle/363003/60003 |
专题 | 中国科学院西北高原生物研究所 |
推荐引用方式 GB/T 7714 | Wei, Ziyi,Zhu, Wenxin,Li, Yinge,et al. Conductive Leaflike Cobalt Metal-Organic Framework Nanoarray on Carbon Cloth as a Flexible and Versatile Anode toward Both Electrocatalytic Glucose and Water Oxidation[J]. INORGANIC CHEMISTRY,2018,57(14). |
APA | Wei, Ziyi.,Zhu, Wenxin.,Li, Yinge.,Ma, Yiyue.,Wang, Jing.,...&Wang, Jianlong.(2018).Conductive Leaflike Cobalt Metal-Organic Framework Nanoarray on Carbon Cloth as a Flexible and Versatile Anode toward Both Electrocatalytic Glucose and Water Oxidation.INORGANIC CHEMISTRY,57(14). |
MLA | Wei, Ziyi,et al."Conductive Leaflike Cobalt Metal-Organic Framework Nanoarray on Carbon Cloth as a Flexible and Versatile Anode toward Both Electrocatalytic Glucose and Water Oxidation".INORGANIC CHEMISTRY 57.14(2018). |
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