Hu Qi, Li Guomin, Han Zhen, Wang Ziyu, Huang Xiaowan, Yang Hengpan, Zhang Qianling, Liu Jianhong, He Chuanxin
College of Chemistry and Environmental Engineering, Shenzhen University, Shenzhen, 518060, P. R. China.
Chemistry. 2020 Mar 26;26(18):3930-3942. doi: 10.1002/chem.201902998. Epub 2019 Aug 28.
Recently, nonmetal doping has exhibited its great potential for boosting the hydrogen evolution reaction (HER) of transition-metal (TM)-based electrocatalysts. To this end, this work overviews the recent achievements made on the design and development of the nonmetal-doped TM-based electrocatalysts and their performance for the HER. It is also shown that by rationally doping nonmetal elements, the electronic structures of TM-based electrocatalysts can be effectively tuned and in turn the Gibbs free energy of the TM for adsorption of H* intermediates (ΔG ) optimized, consequently enhancing the intrinsic activity of TM-based electrocatalysts. Notably, we highlight that concurrently doping two nonmetal elements can continuously and precisely regulate the electronic structures of the TM, thereby maximizing the activity for HER. Moreover, nonmetal doping also accounts for enhancing the physical properties of the TM (i.e. surface area). Therefore, nonmetal doping is a robust strategy for simultaneous regulation of the chemical and physical features of the TM.
最近,非金属掺杂在促进过渡金属(TM)基电催化剂的析氢反应(HER)方面展现出了巨大潜力。为此,本文综述了在非金属掺杂TM基电催化剂的设计与开发及其HER性能方面取得的最新成果。研究还表明,通过合理掺杂非金属元素,可以有效调节TM基电催化剂的电子结构,进而优化TM对H*中间体吸附的吉布斯自由能(ΔG),从而提高TM基电催化剂的本征活性。值得注意的是,我们强调同时掺杂两种非金属元素可以连续且精确地调节TM的电子结构,从而使HER活性最大化。此外,非金属掺杂也有助于增强TM的物理性质(即表面积)。因此,非金属掺杂是同时调节TM化学和物理特性的有效策略。