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Laser-Induced Engineering of Surface Structures and Properties on Oxygen-Adsorbed TiC(111) Surface: First-Principles Calculations

机译:激光诱导的表面结构工程和氧吸附的TIC(111)表面上的性质:第一原理计算

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In this chapter, we used the density functional theory (DFT) to systematically investigate the electron structure and elastic moduli of oxygen-adsorbed 0/Ti_xC_y(111) surface affecting its potential reconstructions with laser. For the first time we studied within the density functional theory framework the local atomic and electron structures of potential O/Ti_xC_y(111) surface configurations as well as their thermodynamic and elastic properties. A considerable rearrangement has been established in the local atomic structure of O/TiC(111) surface depending upon the degree of its coverage with atomic oxygen in FCC stacking position. We have demonstrated that the distance between adsorbate and TiC(lll) surface decreased with the increase of its coverage with oxygen. Additionally, the effect of oxygen adsorbed on the Ti_xC_y(111) surface on the electronic properties in its different reconstructions has been also studied. The results showed that a correlation between the energy level of flat bands in the -5.1 eV and -5.7 eV energy regions was responsible for the doublet of singular peaks corresponding to partial densities of oxygen 2p electrons, and the bond energy and adsorption energy of oxygen atom in non-stoichiometric O/TiC_y(111) systems. Effective charges of titanium and carbon atoms surrounding the oxygen adatom in various reconstructions have been identified. We have established charge transfer from titanium atom to oxygen and carbon atom,s determined by the reconstruction of local atomic and electron structures and correlating with their electronegativity values and chemisorption processes. Calculated values of elastic moduli for the upper part of ultrathin O/TiC (111) and O/Ti_xC_y(111) layers correlate well with experimental findings and other theoretical results. Potential mechanisms for laser nanostructuring of titanium carbide surface have been suggested.
机译:在本章中,我们使用密度泛函理论(DFT)来系统地研究氧吸附的0 / Ti_XC_Y(111)表面的电子结构和弹性模量影响其与激光的电位重建。我们首次在密度函数理论内研究框架局部原子和电子结构的电位O / TI_XC_Y(111)表面配置以及它们的热力学和弹性特性。根据其在FCC堆叠位置中的原子氧的覆盖率的覆盖度,在o / tic(111)表面的局部原子结构中已经建立了相当大的重排。我们已经证明,随着氧气的覆盖率的增加,吸附物和TiC(LLL)表面之间的距离降低。另外,还研究了吸附在Ti_xc_y(111)表面上的氧气在其不同重建中的电子特性上的效果。结果表明,-5.1eV和-5.7eV能量区的平条能量水平与-5.7eV能量区之间的相关性负责对应于氧2P电子的部分密度的奇异峰,以及氧气的粘合能量和吸附能量非化学计量O / TIC_Y(111)系统中的原子。已经鉴定了钛和碳原子的有效电荷在各种重建中围绕氧吸附剂。我们已经通过重建局部原子和电子结构来确定从钛原子和碳原子的电荷转移,并与它们的电负性值和化学吸附过程相关。计算超薄O / TIC(111)和O / TI_XC_Y(111)层上部的弹性模量的值与实验结果以及其他理论结果相关。提出了激光纳米结构的潜在机制。

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