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Influence of the Bulk Growth Direction on TiO_2 and SnO_2 Surface Energies

机译:大块生长方向对TiO_2和SnO_2表面能的影响

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TiO_2 and SnO_2 have the (P4_2/mnm) rutile structure with close lattice parameters and are extensively used in technological applications due to catalytic and optical properties. These properties can dependend on the surface directions and surface energy. It is of interest to estimate which directions are appropriate or energetically more favorable. Mathematical expressions often used in the literature to estimate the surface energy in oxides are based on a direct relationship between surface and bulk energies. However, for other workers the solid growth direction is represented only in the surface energy term (E_(surf)), whereas the bulk energy factor (E_(bulk)) has no influence of the solid growth direction. The latter term (E_(bulk)) is important for surface growth direction of a solid because both surface and bulk can grow in the same direction. This objective of our work is to investigate the influence of the bulk energy term (E_(bulk)), traditionally used in the literature, as well as the supercell energy term (E_(supercell)) representing the influence of the bulk growth direction on the surface energy of the solid.
机译:TiO_2和SnO_2具有(P4_2 / mnm)金红石结构,晶格参数接近,由于其催化和光学性质而被广泛用于技术应用。这些性质可以取决于表面方向和表面能。估计哪个方向合适或在能量上更有利是令人感兴趣的。文献中经常用来估算氧化物中表面能的数学表达式是基于表面能和体能之间的直接关系。但是,对于其他工人,固体生长方向仅用表面能项(E_(surf))表示,而体能因子(E_(bulk))对固体生长方向没有影响。后一项(E_(bulk))对于固体的表面生长方向很重要,因为表面和块体都可以在同一方向上生长。我们工作的目的是研究传统上在文献中使用的体能项(E_(bulk))以及代表体生长方向对体能的影响的超级电池能量项(E_(supercell))的影响。固体的表面能。

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