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N, Ru Codoped Pellet Drum Bundle-Like Sb2S3: An Efficient Hydrogen Evolution Reaction and Hydrogen Oxidation Reaction Electrocatalyst in Alkaline Medium

机译:N,Ru编排颗粒鼓束状SB2S3:碱性介质中有效的氢化反应和氢氧化反应电催化剂

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Though investigations have been made on several metal chalcogenides in hydrogen evolution reactions (HERs) and hydrogen oxidation reactions (HORs), antimony sulfide (Sb2S3) has not generated much attention. In this direction, the present work reports on the synthesis of N, Ru codoped pellet drum bundle-like antimony sulfide (Sb2S3) via a simple reflux method. Subsequent HER and HOR electrocatalytic investigations in 1 M KOH revealed their suitability as an efficient and inexpensive alternative to platinum, as is evident from the overpotential (72 mV at a current density of 10 mA cm(-2)), Tafel slope (193 mV/decade), exchange current density (1.42 mA/cm(2)), and breakdown potential at similar to 0.6 V vs RHE, respectively. Such remarkable HER and HOR performance of N, Ru codoped Sb2S3 could be ascribed to the presence of relatively larger active sites compared to Sb2S3 and N-doped Sb2S3 individually due to synergistic effects arising from N and Ru dopants. Further, N, Ru codoped Sb2S3 demonstrated high intrinsic catalytic activity as indicated by its turnover frequency (2.03 s(-1)) and current loss, corresponding to 35% after 10 h of continuous amperometric i-t operation. Alternatively, such excellent catalytic performance of N, Ru codoped Sb2S3 arises due to geometric lattice defects with surface oxygen vacancy, and the availability of abundant edges and its pellet drum-like morphology also cannot be overruled.
机译:虽然在氢气进化反应(HERS)和氢氧化反应(HORS)中的几种金属硫属化合物上进行了调查,但硫化物(SB2S3)并未产生很多关注。在这种方向上,通过简单的回流方法对本作N,Ru编排颗粒鼓束状锑(SB2S3)的合成报告。在1 M KOH中,她和Hor电催化调查显示了它们作为对铂的有效和廉价的替代品的适用性,从过电位(72mV以10 mA cm(-2)),Tafel斜坡(193 mV)是显而易见的/十年),交换电流密度(1.42mA / cm(2)),分别与0.6V VS RHE类似的分解电位。如N和RU掺杂剂引起的协同效应,与SB2S3和N掺杂的SB2S3相比,N,Ru编码的SB2S3的这种显着的HU,Ru编码的SB2S3和HOR的性能可以归因于与SB2S3和N掺杂的SB2S3相比归因于相对较大的活性位点。此外,N,Ru编码的SB2S3显示出高型固有催化活性,如其变速器频率(2.03秒))和电流损失所示,相当于连续排水率I-T操作10小时后的35%。或者,由于具有表面氧空位的几何晶格缺陷,因此,N,Ru编码的SB2S3的这种优异的催化性能产生,并且不能克服了丰富的边缘的可用性及其颗粒桶状形态。

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