Maleki Farahnaz, Pacchioni Gianfranco
Dipartimento di Scienza dei Materiali, Università di Milano-Bicocca, via R. Cozzi 55, 20125 Milano, Italy.
J Phys Condens Matter. 2021 Sep 29;33(49). doi: 10.1088/1361-648X/ac268e.
We studied the role of iso-valent heteroatoms replacing Tications in the lattice of two titania polymorphs, rutile (r-) and anatase (a-) by means of first principles calculations. The r-TiO(110) and the a-TiO(101) surfaces have been considered and Ti ions in the bulk, sub-surface, and surface sites have been replaced with Si, Ge, Sn, Pb, Zr, Hf, and Ce ions: surface or sub-surface sites are clearly preferred. Since the dopants have the same number of valence electrons as the replaced Ti atom, they can have only two effects: one is steric, related to the different size of the dopant compared to Ti; the other is an orbital effect, due to the energy levels associated to the dopant not present on the pristine surface. Both these effects can modify locally the geometric and electronic structure of the surface, in particular by introducing new states in the band gap. To check the effect of the dopants on the surface reactivity we studied as an example the decomposition of HCOOH which can follow four different paths with desorption of (a) H(b) CO, (c) HO, or (d) CO. The results show the very different behavior of the two titania polymorphs considered, rutile and anatase: rutile is more reactive and more easily reduced than anatase. For specular reasons, the presence of the dopants has in general more pronounced effects on anatase, as they can deeply modify the surface reactivity and the HCOOH decomposition path.
我们通过第一性原理计算研究了等价位杂原子取代二氧化钛两种多晶型物(金红石型(r-)和锐钛矿型(a-))晶格中钛阳离子的作用。我们考虑了r-TiO(110)和a-TiO(101)表面,并将体相、次表面和表面位置的钛离子分别用硅、锗、锡、铅、锆、铪和铈离子取代:明显更倾向于表面或次表面位置。由于掺杂剂的价电子数与被取代的钛原子相同,它们只会产生两种效应:一种是空间效应,与掺杂剂相对于钛的不同尺寸有关;另一种是轨道效应,这是由于原始表面上不存在与掺杂剂相关的能级。这两种效应都可以局部改变表面的几何和电子结构,特别是通过在带隙中引入新的态。为了检验掺杂剂对表面反应性的影响,我们以甲酸分解为例进行了研究,甲酸分解可以通过四种不同的路径进行,分别脱附(a)氢(b)一氧化碳(c)羟基或(d)二氧化碳。结果表明,所考虑的两种二氧化钛多晶型物,即金红石型和锐钛矿型,表现出非常不同的行为:金红石型比锐钛矿型更具反应性且更容易被还原。出于类似的原因,掺杂剂的存在通常对锐钛矿型有更显著的影响,因为它们可以深刻改变表面反应性和甲酸分解路径。