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首页> 外文期刊>Lab on a chip >Membraneless glucose/O2 microfluidic enzymatic biofuel cell using pyrolyzed photoresist film electrodes
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Membraneless glucose/O2 microfluidic enzymatic biofuel cell using pyrolyzed photoresist film electrodes

机译:热解光刻胶膜电极的无膜葡萄糖/ O2微流酶生物燃料电池

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Biofuel cells typically yield lower power and are more difficult to fabricate than conventional fuel cells using inorganic catalysts. This work presents a glucose/O2 microfluidic biofuel cell (MBFC) featuring pyrolyzed photoresist film (PPF) electrodes made on silicon wafers using a rapid thermal process, and subsequently encapsulated by rapid prototyping techniques into a double-Y-shaped microchannel made entirely of plastic. A ferrocenium-based polyethyleneimine polymer linked to glucose oxidase (GOx/Fc-C6-LPEI) was used in the anode/while the cathode contained a mixture of laccase, anthracene-modified multi-walled carbon nanotubes, and tetrabutylammonium bromide-modified Nafion (MWCNTs/laccase/TBAB-Nafion). The cell performance was studied under different flow-rates, obtaining a maximum open circuit voltage of 0.54 + 0.04 V and a maximum current density of 290 ± 28 μA cm~(-2) at room temperature under a flow rate of 70 μL min~(-1) representing a maximum power density of 64 + 5 μW cm~(-2). Although there is room for improvement, this is the best performance reported to date for a bioelectrode-based microfluidic enzymatic biofuel cell, and its materials and fabrication are amenable to mass production.
机译:与使用无机催化剂的常规燃料电池相比,生物燃料电池通常产生的功率更低,并且更难以制造。这项工作提出了一种葡萄糖/氧气微流生物燃料电池(MBFC),其特征是使用快速热处理在硅片上制成热解光致抗蚀剂膜(PPF)电极,然后通过快速原型技术将其封装到完全由塑料制成的双Y型微通道中。在阳极/阳极中使用了与葡萄糖氧化酶(GOx / Fc-C6-LPEI)连接的基于二茂铁的聚乙烯亚胺聚合物,阴极包含漆酶,蒽改性的多壁碳纳米管和四丁基溴化铵改性的Nafion( MWCNT /漆酶/ TBAB-Nafion)。在不同流速下研究电池性能,在室温下以70μLmin〜的流速获得最大开路电压为0.54 + 0.04 V,最大电流密度为290±28μAcm〜(-2)。 (-1)表示最大功率密度为64 + 5μWcm〜(-2)。尽管存在改进的空间,但这是迄今为止报道的基于生物电极的微流酶生物燃料电池的最佳性能,并且其材料和制造方式都可以大量生产。

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