Martínez-Alonso Carmen, Guevara-Vela José Manuel, LLorca Javier
IMDEA Materials Institute, C/Eric Kandel 2, 28906 - Getafe, Madrid, Spain.
Department of Inorganic Chemistry, Complutense University of Madrid, 28040 Madrid, Spain.
Phys Chem Chem Phys. 2021 Sep 29;23(37):21295-21306. doi: 10.1039/d1cp03312c.
The influence of elastic strains on the adsorption of H, O, and OH on the (111) surfaces of 8 fcc (Ni, Cu, Pd, Ag, Pt, Au, Rh, Ir) and on the (0001) surfaces of 3 hcp (Co, Zn, Cd) transition metals was analyzed by means of density functional theory calculations. To this end, surface slabs were subjected to different strain states (uniaxial, biaxial, shear, and a combination of them) up to strains dictated by the mechanical stability limits indicated by phonon calculations. It was found that the adsorption energy followed the predictions of the d-band theory but - surprisingly - the variations in the adsorption energy only depended on the area of the adsorption hole and not on the particular elastic strain tensor applied to achieve this area. The analysis of the electronic structure showed that the applied strains did not modify the shape of the Projected Density of States (PDOS) of the d-orbitals of the transition metals but only led to a shift in the energy levels. Moreover, the presence of the adsorbates on the surfaces led to negligible changes in the PDOS. Thus, the adsorption energies were a function of the Fermi energy which in turn was associated with the change of the area of the adsorption through a general linear law that was valid for all metals. The information in this paper allows the immediate and accurate estimation of the effect of any elastic strain on the adsorption energies of H, O, and OH in 11 transition metals with more than half-filled d-orbitals.
通过密度泛函理论计算,分析了弹性应变对8种面心立方(Ni、Cu、Pd、Ag、Pt、Au、Rh、Ir)金属(111)表面以及3种六方密堆积(Co、Zn、Cd)过渡金属(0001)表面上H、O和OH吸附的影响。为此,对表面平板施加不同的应变状态(单轴、双轴、剪切以及它们的组合),直至达到声子计算所表明的力学稳定性极限所规定的应变。结果发现,吸附能遵循d带理论的预测,但令人惊讶的是,吸附能的变化仅取决于吸附孔的面积,而不取决于为实现该面积而施加的特定弹性应变张量。电子结构分析表明,施加的应变并未改变过渡金属d轨道的投影态密度(PDOS)的形状,而仅导致能级的移动。此外,表面上吸附质的存在导致PDOS的变化可忽略不计。因此,吸附能是费米能的函数,而费米能又通过对所有金属都有效的一般线性定律与吸附面积的变化相关联。本文中的信息使得能够立即准确地估计任何弹性应变对11种d轨道半充满以上的过渡金属中H、O和OH吸附能的影响。