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Effects of current density on preparation and performance of Al/conductive coating/α-PbO_2-Ce O_2-TiO_2/β-Pb O_2-MnO_2-WC-ZrO_2 composite electrode materials 被引量:1
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作者 杨海涛 陈步明 +5 位作者 郭忠诚 刘焕荣 张永春 黄惠 徐瑞东 付仁春 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2014年第10期3394-3404,共11页
Al/conductive coating/α-Pb O2-Ce O2-Ti O2/β-PbO 2-MnO 2-WC-Zr O2 composite electrode material was prepared on Al/conductive coating/α-PbO 2-Ce O2-Ti O2 substrate by electrochemical oxidation co-deposition technique... Al/conductive coating/α-Pb O2-Ce O2-Ti O2/β-PbO 2-MnO 2-WC-Zr O2 composite electrode material was prepared on Al/conductive coating/α-PbO 2-Ce O2-Ti O2 substrate by electrochemical oxidation co-deposition technique. The effects of current density on the chemical composition, electrocatalytic activity, and stability of the composite anode material were investigated by energy dispersive X-ray spectroscopy(EDXS), anode polarization curves, quasi-stationary polarization(Tafel) curves, electrochemical impedance spectroscopy(EIS), scanning electron microscopy(SEM), and X-ray diffraction(XRD). Results reveal that the composite electrode obtained at 1 A/dm2 possesses the lowest overpotential(0.610 V at 500 A/m2) for oxygen evolution, the best electrocatalytic activity, the longest service life(360 h at 40 °C in 150 g/L H2SO4 solution under 2 A/cm2), and the lowest cell voltage(2.75 V at 500 A/m2). Furthermore, with increasing current density, the coating exhibits grain growth and the decrease of content of Mn O2. Only a slight effect on crystalline structure is observed. 展开更多
关键词 composite electrode material A1 substrate β-PbO2-mno2-WC-ZrO2 electrochemical co-deposition current density
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聚3,4-乙烯二氧噻吩/碳纳米管/TiO2电化学传感器构建及其在细胞检测中的应用
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作者 厉婷 徐加泉 黄卫华 《分析科学学报》 CAS CSCD 北大核心 2020年第5期701-709,共9页
本文结合TiO2优良的光催化降解性能,以及电化学传感材料PEDOT/PSS和CNTs的优良电化学性能及抗污染性能,采用一种直接拉制技术,简便、快捷地制备了PEDOT/CNTs/TiO2复合纤维,其长度可达10cm,直径最小可至3μm。在此基础上,分别构建了兼具... 本文结合TiO2优良的光催化降解性能,以及电化学传感材料PEDOT/PSS和CNTs的优良电化学性能及抗污染性能,采用一种直接拉制技术,简便、快捷地制备了PEDOT/CNTs/TiO2复合纤维,其长度可达10cm,直径最小可至3μm。在此基础上,分别构建了兼具抗污染性能和光致清洁性能的平面微米线电极及单根微米线电极,用于监测内皮细胞释放NO。结果显示,所制电极具有良好的电化学性能,对NO的检出限可达4nmol/mL;在培养基中浸泡34h后,其电化学性能无明显变化,表现出良好的抗污染性能;在彻底污染后(无电化学响应),经紫外光照30min后,其电化学性能可恢复至初始的30%,表现出一定的光致清洁能力。 展开更多
关键词 电化学传感器 光致清洁 PEDOT/cnts/TiO_2纤维 抗污染 一氧化氮
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