Zhang Hanyu, Wu Haiming, Jia Yuhan, Yin Baoqi, Geng Lijun, Luo Zhixun, Hansen Klavs
Beijing National Laboratory of Molecular sciences (BNLMS), State Key Laboratory for Structural Chemistry of Unstable and Stable Species, Institute of Chemistry, Chinese Academy of Sciences, Beijing, 100190, P.R. China.
University of Chinese Academy of Sciences, Beijing, 100049, P.R. China.
Commun Chem. 2020 Oct 30;3(1):148. doi: 10.1038/s42004-020-00396-9.
Water and its interactions with metals are closely bound up with human life, and the reactivity of metal clusters with water is of fundamental importance for the understanding of hydrogen generation. Here a prominent hydrogen evolution reaction (HER) of single water molecule on vanadium clusters V (3 ≤ n ≤ 30) is observed in the reaction of cationic vanadium clusters with water at room temperature. The combined experimental and theoretical studies reveal that the wagging vibrations of a V-OH group give rise to readily formed V-O-V intermediate states on V (n ≥ 3) clusters and allow the terminal hydrogen to interact with an adsorbed hydrogen atom, enabling hydrogen release. The presence of three metal atoms reduces the energy barrier of the rate-determining step, giving rise to an effective production of hydrogen from single water molecules. This mechanism differs from dissociative chemisorption of multiple water molecules on aluminium cluster anions, which usually proceeds by dissociative chemisorption of at least two water molecules at multiple surface sites followed by a recombination of the adsorbed hydrogen atoms.
水及其与金属的相互作用与人类生活密切相关,金属团簇与水的反应活性对于理解氢气生成至关重要。本文在室温下阳离子钒团簇与水的反应中,观察到单个水分子在钒团簇V(3≤n≤30)上显著的析氢反应(HER)。结合实验和理论研究表明,V-OH基团的摇摆振动在V(n≥3)团簇上易于形成V-O-V中间态,并使末端氢与吸附的氢原子相互作用,从而实现氢的释放。三个金属原子的存在降低了速率决定步骤的能垒,使得单个水分子能够有效地产生氢气。这种机制不同于多个水分子在铝团簇阴离子上的解离化学吸附,后者通常通过至少两个水分子在多个表面位点的解离化学吸附,随后吸附的氢原子再进行重组来进行。