Chen Jing, Luo Zhixun
State Key Laboratory for Structural Chemistry of Unstable and Stable Species, Institute of Chemistry, Chinese Academy of Sciences., 100190, Beijing, China.
Chemphyschem. 2019 Feb 4;20(3):499-505. doi: 10.1002/cphc.201800868. Epub 2018 Nov 29.
The hydrogen evolution reaction (HER) of water with metallic aluminum-based materials provides an important way to address the global energy challenge; however, fundamental mechanism and reaction dynamics governing the chemical and electronic properties remain a debated research topic. Here we further study the HER mechanisms for water splitting on typical 13-atoms clusters, Al Ga and Al , by first-principles DFT calculations. We noted that the doping of a Ga atom into the Al cluster could reduce the transition state barrier for H O dissociation on the metal cluster. Furthermore, it is interesting that the second water molecule prefers to adsorb on the same metal site giving rise to both thermodynamically and kinetically favorable reaction pathways. Based on the well-established complementary active sites (CAS) mechanism for metal cluster reactivity, we provide insights into the reaction dynamics of such metal clusters with two water molecules, which also sheds light on the Eley-Rideal and Langmuir-Hinshelwood mechanisms in surface science. Natural bond orbitals (NBO) analysis was conducted to evaluate the donor-acceptor charge-transfer interactions between the cluster and the nucleophilic reagent. These results gain a better understanding of the mechanism for water reacting with aluminum-based materials.
金属铝基材料催化水的析氢反应(HER)为应对全球能源挑战提供了一条重要途径;然而,决定化学和电子性质的基本机理及反应动力学仍是一个备受争议的研究课题。在此,我们通过第一性原理密度泛函理论(DFT)计算,进一步研究了典型的13原子团簇AlGa和Al上的水分解析氢反应机理。我们注意到,在Al团簇中掺杂一个Ga原子可以降低金属团簇上H₂O解离的过渡态能垒。此外,有趣的是,第二个水分子更倾向于吸附在同一个金属位点上,从而产生热力学和动力学上都有利的反应路径。基于已确立的金属团簇反应性互补活性位点(CAS)机制,我们深入了解了此类金属团簇与两个水分子反应的动力学过程,这也为表面科学中的埃里-里德机理(Eley-Rideal)和朗缪尔-欣谢尔伍德机理(Langmuir-Hinshelwood)提供了启示。进行了自然键轨道(NBO)分析,以评估团簇与亲核试剂之间的给体-受体电荷转移相互作用。这些结果有助于更好地理解水与铝基材料反应的机理。