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首页> 外文期刊>Electrochemistry communications >Direct electron transfer-type four-way bioelectrocatalysis of CO 2/formate and NAD +/NADH redox couples by tungsten-containing formate dehydrogenase adsorbed on gold nanoparticle-embedded mesoporous carbon electrodes modified with 4-mercaptopyridine
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Direct electron transfer-type four-way bioelectrocatalysis of CO 2/formate and NAD +/NADH redox couples by tungsten-containing formate dehydrogenase adsorbed on gold nanoparticle-embedded mesoporous carbon electrodes modified with 4-mercaptopyridine

机译:CO 2 / formate和NAD + / NADH氧化还原由含钨的甲酸脱氢酶吸附在金纳米颗粒 - 嵌入的中孔碳电极上,改性4-巯基吡啶改性

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AbstractTungsten-containing formate dehydrogenase fromMethylobacterium extorquensAM1 (FoDH1) catalyzes formate oxidation with NAD+. FoDH1 shows little direct communication with carbon electrodes, including mesoporous Ketjen Black-modified glassy carbon electrode (KB/GCE); however, it shows well-defined direct electron transfer (DET)-type bioelectrocatalysis of carbon dioxide reduction, formate oxidation, NAD+reduction, and NADH oxidation on gold nanoparticle (AuNP)-embedded KB/GCE treated with 4-mercaptopyridine. Microscopic measurements reveal that the AuNPs (d=5nm) embedded on the KB surface are uniformly dispersed. Electrochemical data indicate that the pyridine moiety on the AuNPs plays important roles in facilitating the interfacial electron transfer kinetics and increasing the probability of productive orientation of FoDH1. The formal potential of the electrochemical communication site, which is most probably an ion?sulfur cluster, is evaluated as ?0.591±0.005V vs. Ag|AgCl|sat. KCl from Nernst analysis of the steady-state catalytic waves.Graphical abstractDisplay Omitted
机译:<![cdata [ 抽象 含钨的甲酸甲酸脱氢酶从甲基杆菌昵称 am1(fodh1)催化用NAD氧化氧化 + 。 FodH1显示与碳电极的直接通信,包括中孔ketjen黑色改性玻璃电极(Kb / gce);然而,它显示出明确定义的直接电子转移(DET)生物电离合物的二氧化碳还原,甲酸氧化,NAD + 减少,纳米纳米粒子上的NADH氧化(AUNP)用4-巯基吡啶治疗的j Bedded Kb / gce。微观测量显示嵌入在KB表面上的AUNPS( D = 5nm)均匀分散。电化学数据表明,吡啶部分在剖腹产上起重要作用,以促进界面电子转移动力学并增加FodH1的生产方向的概率。电化学通信部位的正式潜力,其最可能是离子簇簇,被评估为0.591±0.005V与Ag | AgCl | SAT。来自NERNST分析的稳态催化波。 图形抽象 显示省略< / ce:简单 - 段>

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