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CoSe_2@NiSe_2 nanoarray as better and efficient electrocatalyst for overall water splitting

机译:COSE_2 @ NISE_2纳米阵列作为整体水分裂的更好和高效的电催化剂

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Electrocatalytic water splitting is identified as one of the most promising solutions to energy crisis. The CoSe2@NiSe2 materials were first prepared and in situ grown on nickel foam by typical hydrothermal and selenification process at 120 degrees C. The results show that the CoSe2@NiSe2 material used as the 3D substrates electrode can maximize the synergy between the CoSe2 and NiSe2, and also exhibits high efficiency of water splitting reaction. The lower overpotential of only 235 mV is presented to attain 20 mA cm(-2) compared to the benchmark of RuO2 electrodes (270 mV @ 20 mA cm(-2)). Besides, the CoSe2@NiSe2 material also shows a remarkable improved hydrogen evolution reaction activity compared to NiSe2 (192 mV@10 mA cm(-2)) and Co precursor catalysts (208 mV@10 mA cm(-2)) individually, which a low overpotential of only 162 mV is achieved at 10 mA cm(-2). The CoSe2@NiSe2 catalysts exhibit excellent water splitting performance (cell voltage of 1.50 V@ 10 mA cm(-2)) under alkaline conditions. It was proved that the high water splitting performance of the catalyst is attributed to high electrochemical activity area and synergistic effect. The work offers new ideas for the exploitation of synergistic catalysis of composite catalysts and adds new examples for the exploitation of efficient, better and relatively non-toxic electrocatalysts. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:电分解水被认定为最有前途的解决能源危机的一个。首先制备的CoSe2 @ NiSe2材料和原位由典型热液和selenification工艺生长在镍泡沫在120℃下的结果表明,用作3D基板电极的CoSe2 @ NiSe2材料可以最大限度地CoSe2和NiSe2之间的协同作用,并且还呈现水分解反应的高效率。下的超电势仅235毫伏的被呈现给达到20毫安厘米(-2)相比的RuO 2电极的基准(270毫伏@20毫安厘米(-2))。此外,CoSe2 @ NiSe2材料还示出相比NiSe2(192毫伏@10毫安厘米(-2))和Co前体催化剂(208毫伏@10毫安厘米(-2))单独地,一个显着改进的析氢反应活性,其超电势仅162 mV的低在10mA厘米实现(-2)。所述CoSe2 @ NiSe2催化剂表现出优异的水分解性能在碱性条件下(1.50 V□的10毫安厘米(-2)的电池电压)。它证明了催化剂的高水分解性能归因于高的电化学活性区和协同效应。这项工作提供了新的思路复合催化剂的协同催化的开发,并增加了新的例子高效,更好的和相对无毒电催化剂的开发。 (c)2020氢能量出版物LLC。 elsevier有限公司出版。保留所有权利。

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