首页> 外文期刊>International Journal of Electrochemical Science >Synergetic Optimization via Composition-Dependent Nanostructuring in Co-Mo-S Electrocatalysts for Efficient Hydrogen Evolution in Alkaline Solution
【24h】

Synergetic Optimization via Composition-Dependent Nanostructuring in Co-Mo-S Electrocatalysts for Efficient Hydrogen Evolution in Alkaline Solution

机译:通过Co-Mo-S电催化剂中依赖成分的纳米结构进行协同优化,以在碱性溶液中有效地释放氢气

获取原文
获取外文期刊封面目录资料

摘要

Earth-abundant metal sulfides attracts large attention in recent years for hydrogen production via electrocatalytic water splitting. However, most works have been limited to the acidic condition, whereas the hydrogen evolution reaction (HER) in alkaline condition has rarely been discussed. Here we present an effective strategy for the growing of Co-Mo-S catalysts on carbon cloth via the controllable incorporation of cobalt into MoS2 with L-cysteine and phosphomolybdic acid to achieve the synergistic interaction of CoS2 and MoS2. The optimized Co-Mo-S catalysts (Co:Mo=1:2) showed a largely improved HER activity with an overpotential of 92 mV at current density of 10 mA cm-2 and Tafel slope of 82 mV dec-1. The origin of the activity enhancement was investigated through a series of characterizations, where the synergetic effect of the intrinsic fast HER kinetics of metallic CoS2 and the high active surface area of MoS2 plays a crucial role. With appropriate amount of cobalt, the Co- Mo-S catalysts show a relatively uniform distribution on the carbon cloth to ensure the large surface area, whereas excessive cobalt results in the formation of the large CoS2 particles with low HER activity from the low active surface area. Further electrochemical measurements demonstrated that the combination of larger exchange current density of CoS2 and the high electrochemical double–layer capacitance (proportional to the active surface area) of MoS2 together contributed to the HER activity enhancement of the Co-Mo-S catalysts. The Co-Mo-S/CC catalysts also show robust stability in alkaline solution. Our work provides a more profound understanding and an interesting view for the design of efficient ternary transition metal sulfide HER catalysts in alkaline condition by synergetic optimization of the intrinsic HER kinetics and the electrochemical active surface area.
机译:近年来,通过电催化水分解法,富含地球的金属硫化物引起了人们的广泛关注。但是,大多数工作仅限于酸性条件,而很少讨论碱性条件下的析氢反应(HER)。在这里,我们提出了一种有效的策略,可通过将钴与L-半胱氨酸和磷钼酸可控制地掺入MoS2中,从而在炭布上生长Co-Mo-S催化剂,从而实现CoS2和MoS2的协同作用。优化的Co-Mo-S催化剂(Co:Mo = 1:2)在10 mA cm-2的电流密度和82 mV dec-1的Tafel斜率下显示出显着改善的HER活性,超电势为92 mV。通过一系列表征研究了活性增强的起源,其中金属CoS2的固有快速HER动力学与MoS2的高活性表面积的协同效应起着至关重要的作用。使用适量的钴,Co-Mo-S催化剂在碳布上显示相对均匀的分布以确保较大的表面积,而过量的钴会导致从低活性表面形成具有低HER活性的大CoS2颗粒区。进一步的电化学测量表明,较大的CoS2交换电流密度和较高的MoS2电化学双层电容(与活性表面积成比例)相结合,共同促进了Co-Mo-S催化剂的HER活性增强。 Co-Mo-S / CC催化剂在碱性溶液中也显示出稳定的稳定性。通过协同优化内在HER动力学和电化学活性表面积,我们的工作为碱性条件下高效三元过渡金属硫化物HER催化剂的设计提供了更深刻的理解和有趣的观点。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号