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首页> 外文期刊>Analytical chemistry >Mediator less Glucose Biosensor and Direct Electron Transfer Type Glucose/Air Biofuel Cell Enabled with Carbon Nanodots
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Mediator less Glucose Biosensor and Direct Electron Transfer Type Glucose/Air Biofuel Cell Enabled with Carbon Nanodots

机译:不含介体的葡萄糖生物传感器和具有碳纳米点的直接电子转移型葡萄糖/空气生物燃料电池

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摘要

Utilization of carbon nanodots (CNDs), newcomers to the world of carbonaceous nanomaterials, in the electrochemistry realm has rarely been reported so far. In this study, CNDs were used as immobilization supports and electron carriers to promote direct electron transfer (DET) reactions of glucose oxidase (GOx) and bilirubin oxidase (BOD). At the CNDs electrode entrapped with GOx, a high rate constant (k(s)) of 6.28 +/- 0.05 s(-1) for fast DET and an apparent Michaelis-Menten constant (K-M(app)) as low as 0.85 +/- 0.03 mM for affinity to glucose were found. By taking advantage of its excellent direct bioelectrocatalytic performances to glucose oxidation, a DET-based biosensor for glucose detection ranging from 0 to 0.64 mM with a high sensitivity of 6.1 mu A mM(-1) and a limit of detection (LOD) of 1.07 +/- 0.03 mu M (S/N = 3) was proposed. Additionally, the promoted DET of BOD immobilized on CNDs was also observed and effectively catalyzed the reduction of oxygen to water at the onset potential of +0.51 V (vs Ag/AgCl). On the basis of the facilitated DET of these two enzymes at CNDs electrodes, a mediator-free DET-type glucose/air enzymatic biofuel cell (BFC), in which CNDs electrodes entrapped with GOx and BOD were employed for oxidizing glucose at the bioanode and reducing oxygen at the biocathode, respectively, was successfully fabricated. The constructed BFC displayed an open-circuit voltage (OCV) as high as 0.93 V and a maximum power density of 40.8 mu W cm(-2) at 0.41 V. These important features of CNDs have implied to be promising materials for immobilizing enzymes and efficient platforms for elaborating bioelectrochemical devices such as biosensors and BFCs.
机译:到目前为止,在电化学领域中碳纳米点(CND)的使用是碳纳米材料世界中的新手。在这项研究中,CNDs被用作固定化支持物和电子载体,以促进葡萄糖氧化酶(GOx)和胆红素氧化酶(BOD)的直接电子转移(DET)反应。在夹有GOx的CND电极上,快速DET的高速率常数(k(s))为6.28 +/- 0.05 s(-1),表观的Michaelis-Menten常数(KM(app))低至0.85 +发现对葡萄糖的亲和力为0.03mM。利用其出色的直接生物电催化性能来氧化葡萄糖,基于DET的生物传感器可检测0至0.64 mM的葡萄糖,具有6.1μA mM(-1)的高灵敏度和1.07的检测极限(LOD)提出了+/- 0.03μM(S / N = 3)。另外,还观察到了固定在CND上的BOD的促进DET,并在+0.51 V(vs Ag / AgCl)的起始电势下有效地催化了氧气向水的还原。基于CNDs电极上这两种酶的促进DET,无介体的DET型葡萄糖/空气酶生物燃料电池(BFC),其中夹带GOx和BOD的CNDs电极用于氧化生物阳极处的葡萄糖。分别在生物阴极上还原了氧气。构造的BFC在0.41 V时显示出高达0.93 V的开路电压(OCV),最大功率密度为40.8μW cm(-2)。CND的这些重要特征暗示其是有望用于固定酶和酶的材料。用于制造生物电化学设备(例如生物传感器和BFC)的高效平台。

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