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Development of a miniature silicon wafer fuel cell using L-ascorbic acid as fuel 被引量:1
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作者 Jian WU Zhi-yong XIAO +1 位作者 yi-bin ying Philip C.H. CHAN 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2008年第7期955-960,共6页
In the current studies a miniature silicon wafer fuel cell(FC) using L-ascorbic acid as fuel was developed. The cell employs L-ascorbic acid and air as reactants and a thin polymer electrolyte as a separator. Inductiv... In the current studies a miniature silicon wafer fuel cell(FC) using L-ascorbic acid as fuel was developed. The cell employs L-ascorbic acid and air as reactants and a thin polymer electrolyte as a separator. Inductively coupled plasma(ICP) silicon etching was employed to fabricate high aspect-ratio columns on the silicon substrate to increase the surface area. A thin platinum layer deposited directly on the silicon surface by the sputtering was used as the catalyst layer for L-ascorbic acid electro-oxidation. Cyclic voltammetry shows that the oxidation of L-ascorbic acid on the sputtered platinum layer is irreversible and that the onset potentials for the oxidation of L-ascorbic acid are from 0.27 V to 0.35 V versus an Ag/AgCl reference electrode. It is found that at the room temperature,with 1 mol/L L-ascorbic acid/PBS(phosphate buffered solution) solution pumped to the anode at 1 ml/min flow rate and air spontaneously diffusing to the cathode as the oxidant,the maximum output power density of the cell was 1.95 mW/cm2 at a current density of 10 mA/cm2. 展开更多
关键词 硅片燃料电池 L-抗坏血酸 发展 电解液
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一种用于电化学免疫分析的抗钝化的电极浆料(英文)
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作者 Qi-qi ZHENG Yuan-chao LU +3 位作者 Zun-zhong YE Jian-feng PING Jian WU yi-bin ying 《Journal of Zhejiang University-Science B(Biomedicine & Biotechnology)》 SCIE CAS CSCD 2018年第9期726-734,共9页
目的:酶联免疫分析常用底物对硝基苯磷酸盐分解后产生对硝基苯酚(PNP),该物质对电极具有钝化作用,限制了该体系在电化学免疫分析领域的应用。因此,需要开发一种具有抗钝化作用的电极浆料。创新点:石墨烯-子液体-壳聚糖(rGO/IL/Chi)电极... 目的:酶联免疫分析常用底物对硝基苯磷酸盐分解后产生对硝基苯酚(PNP),该物质对电极具有钝化作用,限制了该体系在电化学免疫分析领域的应用。因此,需要开发一种具有抗钝化作用的电极浆料。创新点:石墨烯-子液体-壳聚糖(rGO/IL/Chi)电极浆料不仅具有抗钝化作用,且拥有良好的电化学性能,制备过程中无需使用任何有机溶剂,安全环保。方法:制备rGO/IL/Chi复合浆料,涂布于单面导电金箔上,75℃,10 min,将其作为工作电极;背面涂布自制的银浆,作为参比电极和对电极;0.03 g/ml壳聚糖溶液作为绝缘浆料。结论:本研究表明,在比较商品化的玻碳电极、自制丝网印刷电极、石墨烯修饰的丝网印刷电极和rGO/IL/Chi电极对PNP的循环伏安响应时,rGO/IL/Chi电极具有最大的峰电流响应和最小的峰电位。同时,对四种电极进行性能表征时,rGO/IL/Chi电极具有最小的峰电位差和最大的峰电流。这表明rGO/IL/Chi电极具有较好的电化学性能,且对PNP有较大的响应。比较四种电极对PNP的安培响应之后,发现只有rGO/IL/Chi电极具有抗钝化作用。可将该电极用于肌钙蛋白I的检测,其检测限为0.05ng/ml。 展开更多
关键词 电化学免疫分析 电极浆料 抗钝化 离子液体 对硝基苯酚
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