Bo JiangNantao YingQiuyu WangJiusan XiaoKai HuangJungang HouHongmin Zhu
The structural properties and mixing thermodynamic of TiC 1− x N x and TiO 1− x N x (0 ≤ x ≤ 1) solid solutions have been studied by X‐ray diffraction method and first‐principles calculations. The TiC 1− x N x and TiO 1− x N x compounds were synthesized via solid‐state reaction and the analysis of XRD patterns show the properties of continuous solid solutions over the whole composition range. Thermodynamic analyses and structural stability studies were performed based on the mixing enthalpies and electronic structures. The mixing enthalpies of TiC 1− x N x and TiO 1− x N x can be fitted using a second‐degree polynomial with the increasing of supercell. The first‐principles calculations results reveal that the TiO 1− x N x shows large number vacancies segregated in TiO ‐part. The charge redistributed around Ti vacancy constitutes the main contribution to the stabilization rather than the Ti–Ti bond across the O vacancy through analyzing the electron density difference plots and PDOS . These results provide theoretical basis for the development and application of the TiC 1− x N x and TiO 1− x N x solid solutions.
Nissim U. NaviRoni Z. ShneckTatiana Y. ShvarevaG. KimmelJacob ZabickyM.H. MintzAlexandra Navrotsky
Yohan SeoKyle G. WebberAndreja BenčanJurij KoruzaBarbara MaličMarija KosecJürgen Rödel
Mirela AirimioaeiM.N. PalamaruAlexandra Raluca IordanP. BerthetClaudia DecorseLavinia CurecheriuLiliana Mitoşeriu
Cailan TianZhenxing YueSiqin MengYuanyuan Zhou
Eric Jianfeng ChengHirokazu KatsuiRong TuTakashi Goto