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Phase behavior of terminating oxygen layer of V_2C MXene

机译:终止V_2C mxene氧层的相行为

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The investigation is made on the phase behavior of the surface-terminating oxygen layer on MXene V_2C sheet using the methods of density functional theory (DF)T and statistical physics. Two approximations of the potential of lateral interactions between adsorbed oxygen atoms are constructed. The first approximation is the pair potential form. The second approximation is constructed by the Cluster Expansion (CE) method. As expected, quantitative estimations of approximation errors show that the CE approximation is more accurate, but the pair potential also turns to be of comparable accuracy. Then, adsorption isotherms are calculated using statistical physics algorithms implemented in the SuSMoST code. The isotherms reveal nontrivial phase behavior of the oxygen layer: three phases with coverages of 1/3, 1/2 and 2/3 monolayer are discovered. From free energy calculations, it is predicted that complete cleaning of the V_2C surface from oxygen is possible at temperatures above 2500 K and at partial pressure below 10~(-9) bar. At atmospheric pressure in air, a complete oxygen coating is stable at temperatures up to 2700 K. Phases with intermediate coverages are stable at temperature below 1200 K and probably could be observed only at ultra-low partial pressure of oxygen.
机译:使用密度泛函理论(DF)T和统计物理学方法对MXENE V_2C片材上的表面终止氧层的相位行为进行研究。构建吸附氧原子之间的横向相互作用电位的两个近似。第一近似是对势形式。第二近似由集群扩展(CE)方法构成。正如预期的那样,近似误差的定量估计表明CE近似更准确,但是该对电位也变为可比的准确性。然后,使用在MASMOMETS CODE中实现的统计物理算法计算吸附等温。等温物体揭示氧层的非血液相行为:发现具有1/3,1 / 2和2/3单层覆盖的三个阶段。从自由能量计算,预测,在2500k的温度和低于10〜(9)杆的部分压力下,可以完全清洁V_2C表面的氧气表面。在空气中的大气压下,完全氧涂层在高达2700k的温度下稳定。中间覆盖的相在1200k低于1200k的温度下稳定,并且只能在氧的超低部分压力下观察到。

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