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首页> 外文期刊>ACS applied materials & interfaces >New Biocatalyst Including a 4-Nitrobenzoic Acid Mediator Embedded by the Cross-Linking of Chitosan and Genipin and Its Use in an Energy Device
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New Biocatalyst Including a 4-Nitrobenzoic Acid Mediator Embedded by the Cross-Linking of Chitosan and Genipin and Its Use in an Energy Device

机译:新的生物催化剂,包括壳聚糖和Genipin的交联嵌入4-硝基苯甲酸介体,并在能量装置中使用

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摘要

A new anodic catalyst consisting of carbon nanotube, 4-nitrobenzoic acid, chitosan, genipin, and glucose oxidase (GOx) (CNT/4-NBA/[Chit/GOx/GP]) is suggested to promote the glucose oxidation reaction (GOR) and the performance of enzymatic biofuel cell (EBC). In this catalyst, through the cross-linked structure of chitosan and genipin and the proper distribution of amine groups within chitosan, many GOx molecules are maximally captured, their leaching out is suppressed, and the GOR is improved upon. In addition, 4-nitrobenzoic acid plays the role of mediator well. The effect induced by the cross-linked structure is evaluated by ultraviolet-visible (UV-vis) spectroscopy, pH measurements, and electrochemical characterizations. According to the characterizations, the new CNT/4-NBA/[Chit/GOx/GP] catalyst contains a large amount of GOx (17.8 mg/mL) and produces a high anodic current (331 mu A/cm(2) at 0.3 V vs Ag/AgCl) with a low onset potential (0.05 V vs Ag/AgCl) because its catalytic activity follows the desirable reaction pathway that minimizes creation of a protonated amine group that interferes with GOR. When the performance of EBC using this catalyst as an anodic electrode is measured, the EBC shows a high open-circuit voltage of 0.54 V and a maximum power density of 38 mu W/cm(2).
机译:提出了一种由碳纳米管,4-硝基苯甲酸,壳聚糖,Genipin和葡萄糖氧化酶(GOX)组成的新的阳极催化剂(CNT / 4-NBA / [CHIT / GOX / GP])以促进葡萄糖氧化反应(GOR)和酶生物燃料细胞(EBC)的性能。在该催化剂中,通过壳聚糖和Genipin的交联结构和壳聚糖内胺基的适当分布,最大地捕获许多GOX分子,抑制它们的浸出,并且GOR改善了。此外,4-硝基苯甲酸很好地发挥了介质的作用。通过紫外线可见(UV-VIS)光谱,pH测量和电化学表征,通过紫外线可见的结构诱导的效果。根据表征,新的CNT / 4-NBA / [CHIT / GOX / GP]催化剂含有大量的GOX(17.8mg / mL),并产生高阳极电流(331μA/ cm(2)0.3 Vs Ag / AgCl)具有低发病电位(0.05V Vs Ag / AgCl),因为其催化活性遵循所需的反应途径,其最小化产生干扰GOR的质子化胺基的产生。当测量使用该催化剂作为阳极电极的EBC的性能时,EBC显示出0.54V的高开路电压,并且最大功率密度为38μW/ cm(2)。

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