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Paper-based enzymatic microfluidic fuel cell: From a two-stream flow device to a single-stream lateral flow strip

机译:纸基酶微流燃料电池:从两股流装置到单股侧流条

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摘要

This work presents a first approach towards the development of a cost-effective enzymatic paper-based glucose/O2 microfluidic fuel cell in which fluid transport is based on capillary action. A first fuel cell configuration consists of a Y-shaped paper device with the fuel and the oxidant flowing in parallel over carbon paper electrodes modified with bioelectrocatalytic enzymes. The anode consists of a ferrocenium-based polyethyleneimine polymer linked to glucose oxidase (GOx/Fc-C6-LPEI), while the cathode contains a mixture of laccase, anthracene-modified multiwall carbon nanotubes, and tetrabutylammonium bromide-modified Nafion (MWCNTs/laccase/TBAB-Nafion). Subsequently, the Y-shaped configuration is improved to use a single solution containing both, the anolyte and the catholyte. Thus, the electrolytes pHs of the fuel and the oxidant solutions are adapted to an intermediate pH of 5.5. Finally, the fuel cell is run with this single solution obtaining a maximum open circuit of 0.55 ± 0.04 V and a maximum current and power density of 225 ± 17 μA cm−2 and 24 ± 5 μW cm−2, respectively. Hence, a power source closer to a commercial application (similar to conventional lateral flow test strips) is developed and successfully operated. This system can be used to supply the energy required to power microelectronics demanding low power consumption.
机译:这项工作提出了一种开发具有成本效益的基于酶纸质葡萄糖/ O2微流控燃料电池的第一种方法,其中流体的传输基于毛细管作用。第一种燃料电池配置包括一个Y形纸装置,其燃料和氧化剂在经过生物电催化酶修饰的碳纸电极上平行流动。阳极由连接到葡萄糖氧化酶(GOx / Fc-C6-LPEI)的基于二茂铁的聚乙烯亚胺聚合物组成,而阴极则包含漆酶,蒽改性的多壁碳纳米管和四丁基溴化铵改性的Nafion(MWCNTs /漆酶)的混合物。 / TBAB-Nafion)。随后,改进了Y形配置,以使用包含阳极电解液和阴极电解液的单一溶液。因此,燃料和氧化剂溶液的电解质pH值适应于5.5的中间pH值。最后,使用该单一解决方案运行燃料电池,最大开路为0.55±0.04 V,最大电流和功率密度分别为225±17μAcm-2和24±5μWcm-2。因此,更接近于商业应用的电源(类似于常规的侧向流动测试条)被开发并成功地操作。该系统可用于提供所需的能量,从而为要求低功耗的微电子设备供电。

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