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Simultaneous glucose sensing and bioenergy harnessing

机译:同时葡萄糖感应和生物能源利用

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We describe herein the construction of a glucose biosensor system that senses glucose without the use of potentiostat and harness usable electrical energy from glucose to power a digital electronic device simultaneously. This system is powered by a single enzymatic glucose biofuel cell comprising a highly dense mesh network of multi-walled carbon nanotubes and enzymes that results in the immobilization and direct electrical connection of the enzymes. The bioanode is functionalized with pyroloquinoline quinone glucose dehydrogenase, while the biocathode is functionalized with bilirubin oxidase. The glucose biofuel cell assembly and its performance were investigated under physiological conditions (pH 7.4 and 37 °C) at which a maximum open circuit voltage of 548.2 mV, short circuit current density of 7.19 mA/cm2 and peak power density of 1.475 mA/cm2 were obtained in 20 mM glucose. The nominal electrical power generated from the single glucose biofuel cell (~ 548 mV) was amplified to 3.2 V using a two stage electrical power amplification circuit and a capacitive element functioning as a glucose transducer. The self-powered glucose biosensor exhibited a linear dynamic range of 1 mM-45 mM and a high sensitivity of 92.51 Hz/cm2.mM when simultaneously sensing glucose and powering a glucometer. Additionally, the system demonstrated excellent operational stability over a 53-day period.
机译:我们在此描述了葡萄糖生物传感器系统的构建,其感测葡萄糖而不使用孔孔和线束可从葡萄糖中使用电能同时为数字电子设备供电。该系统由单次酶葡萄糖生物燃料电池供电,包括多壁碳纳米管和酶的高致密的网状网络,导致酶的固定和直接电连接。用吡咯喹啉醌葡萄糖脱氢酶官能化,同时用胆红素氧化酶官能化。在生理条件(pH 7.4和37°C)下研究了葡萄糖生物燃料电池组件及其性能,其中最大开路电压为548.2mV,短路电流密度为7.19mA / cm 2 和在20mM葡萄糖中获得1.475mA / cm 2 的峰值功率密度。使用从两个级电力放大电路和用作葡萄糖换能器的电容元件,将来自单葡萄糖生物燃料电池(〜548mV)产生的标称电力扩增至3.2V。自供电的葡萄糖生物传感器在同时感应葡萄糖和供电血糖仪供电时,具有1mm-45mm的线性动态范围,高灵敏度为1mm-45mm,高灵敏度为92.51 Hz / cm 2 .mm。此外,该系统在53天的时间内显示出优异的操作稳定性。

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