Chen Jian, Ha Yuan, Wang Ruirui, Liu Yanxia, Xu Hongbin, Shang Bin, Wu Renbing, Pan Hongge
Institute of Science and Technology for New Energy, Xi'an Technological University, Xi'an, 710021, People's Republic of China.
School of Advanced Materials and Nanotechnology, Xidian University, Xi'an, 710126, People's Republic of China.
Nanomicro Lett. 2022 Sep 14;14(1):186. doi: 10.1007/s40820-022-00933-2.
Exploring highly active but inexpensive electrocatalysts for the hydrogen evolution reaction (HER) is of critical importance for hydrogen production from electrochemical water splitting. Herein, we report a multicomponent catalyst with exceptional activity and durability for HER, in which cobalt nanoparticles were in-situ confined inside bamboo-like carbon nanotubes (CNTs) while ultralow ruthenium loading (~ 2.6 µg per electrode area ~ cm) is uniformly deposited on their exterior walls (Co@CNTsǀRu). The atomic-scale structural investigations and theoretical calculations indicate that the confined inner Co and loaded outer Ru would induce charge redistribution and a synergistic electron coupling, not only optimizing the adsorption energy of H intermediates (ΔG) but also facilitating the electron/mass transfer. The as-developed Co@CNTsǀRu composite catalyst requires overpotentials of only 10, 32, and 63 mV to afford a current density of 10 mA cm in alkaline, acidic and neutral media, respectively, representing top-level catalytic activity among all reported HER catalysts. The current work may open a new insight into the rational design of carbon-supported metal catalysts for practical applications.
探索用于析氢反应(HER)的高活性但低成本的电催化剂对于通过电化学水分解制氢至关重要。在此,我们报道了一种对HER具有卓越活性和耐久性的多组分催化剂,其中钴纳米颗粒原位限制在竹状碳纳米管(CNT)内部,同时超低负载量的钌(每电极面积约2.6μg/cm)均匀沉积在其外壁上(Co@CNTsǀRu)。原子尺度的结构研究和理论计算表明,受限的内部钴和负载的外部钌会引起电荷重新分布和协同电子耦合,不仅优化了H中间体的吸附能(ΔG),还促进了电子/质量传递。所开发的Co@CNTsǀRu复合催化剂在碱性、酸性和中性介质中分别仅需10、32和63mV的过电位即可提供10mA/cm的电流密度,在所有报道的HER催化剂中代表了顶级催化活性。当前的工作可能为碳载金属催化剂的实际应用合理设计开辟新的思路。