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Pentadentate Copper(Ⅱ)-amidate complex as a precatalyst for electrocatalytic proton reduction

机译:铜铜(Ⅱ) - 亚特米酸盐作为电催化质子的预催化剂

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Electrochemical reduction studies of a mononuclear Cu(II) complex bearing a pentadentate amidate ligand under both aqueous and non-aqueous media revealed the deposition of a heterogeneous film on the electrode. The heterogeneous film was grown on an FTO working electrode by control potential electrolysis (CPE) at -0.9 V vs. NHE for 3 h (pH 3.0, phosphate buffer). Characterization of the electrodeposited film by SEM, EDX and XPS indicates the preferential formation of Cu2O. The FTO/Cu2O cathode, thus formed, exhibits electrocatalytic proton reduction in acidic aqueous medium (pH 3.0) with 95% Faradaic efficiency at moderate overpotential (eta = 320 mV at onset). The overpotential required to reach 1 mA/cm(2) is 530 mV. The FTO/Cu2O cathode maintained a current density of 2.5 mA cm(-2) for a period of 3 h and showed stability after 200 scan cycles. (C) 2021 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:在含水和非水介质下携带的一核Cu(II)复合物的单核Cu(II)复合物的电化学还原研究显示了在电极上的非均相膜的沉积。 通过控制电位电解(CPE)在-0.9V与NHE上以3小时(pH 3.0,磷酸盐缓冲液),在FTO工作电极上生长异质膜。 通过SEM,EDX和XPS表征电沉积膜,表明CU2O的优先形成。 由此形成的FTO / CU2O阴极在酸性水性介质(pH3.0)中具有95%的游泳效率在中等过电位(ETA = 320mV时)的电催化质子还原。 达到1 mA / cm(2)所需的过电位为530 mV。 FTO / CU2O阴极保持在3小时的时间为2.5 mA cm(-2)的电流密度,并在200次扫描循环后显示稳定性。 (c)2021氢能出版物LLC。 elsevier有限公司出版。保留所有权利。

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