首页> 外文期刊>Journal of power sources >A glucose/oxygen enzymatic fuel cell exceeding 1.5 V based on glucose dehydrogenase immobilized onto polyMethylene blue-carbon nanotubes modified double-sided screen printed electrodes: Proof-of-concept in human serum and saliva
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A glucose/oxygen enzymatic fuel cell exceeding 1.5 V based on glucose dehydrogenase immobilized onto polyMethylene blue-carbon nanotubes modified double-sided screen printed electrodes: Proof-of-concept in human serum and saliva

机译:基于固定在聚亚甲基蓝碳纳米管上的葡萄糖脱氢酶改性的双面筛网印刷电极的葡萄糖/氧酶燃料电池超过1.5V的葡萄糖/氧酶促燃料电池:人血清和唾液中的概念验证

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摘要

Herein we report on a new hybrid enzymatic fuel cell (EFC) based on mediated/direct electron transfer, which is assembled by considering two different configurations: i) two normal screen printed electrodes (SPEs) in one electrochemical cell and ii) two double-sided SPEs each one comprising both bioanode and biocathode, connected in series.After a deep electrodes characterization, they are assembled according to the first configuration obtaining a maximal power output of 25.8 +/- 0.7 mu W cm(-2) at a cell voltage of 0.57 V and an open circuit voltage (OCV) of 0.78 V. Moreover, the EFC performance are substantially improved by using the second configuration (EFCs connected in series) obtaining a maximal power output of 59.6 +/- 1.9 mu W cm(-2) at a cell voltage of 1.16 V and an open circuit voltage (OCV) of 1.58 V. Finally, the last EFC configuration is tested in human saliva and serum showing good performance in terms of OCV and maximal power output as proof-of-concept to power implantable bioelectronics (e.g., pacemaker) or develop self-powered glucose biosensors.
机译:在此我们基于介导/直接电子转移报告新的杂交酶促燃料电池(EFC),其通过考虑两种不同的配置来组装:i)在一个电化学电池中的两个正常筛网印刷电极(SPE)和II)两次双面SPES包括Bioanode和Biocathode,串联连接。在深度电极表征中,它们根据第一配置组装在电池电压下的最大功率输出为25.8 +/-0.7μWCM(-2)的最大功率输出0.57 V的开路电压(OCV)为0.78 V.此外,通过使用第二种配置(串联连接的EFC)获得最大功率输出的EFC性能基本上提高了59.6 +/- 1.9 mu w cm( - 2)在1.16V的电池电压和1.58V的开路电压(OCV),最后,在人类唾液和血清中测试了最后的EFC配置,在OCV和最大功率输出方面表现出良好的性能作为验证 - 概念到电力植入物能够生物电化(例如,起搏器)或开发自给自足的葡萄糖生物传感器。

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