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Role of elasticity forces in thermodynamics of intercalation compounds: Self-consistent mean-field theory and monte carlo simulations

机译:弹性力在插层化合物热力学中的作用:自洽平均场理论和蒙特卡洛模拟

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摘要

We propose a self-consistent mean-field lattice-gas theory of intercalation compounds based on effective interactions between interstitials in the presence of the host atoms. In addition to short-range screened Coulomb repulsions, usually discussed in the lattice gas models, the present theory takes into account long-range effecitve attractions between intercalants due to elasticity of the host matrix. The mean-field phase diagram in the space of interaction parameters contains the domains of first- and second-order transitions of the order-disorder type, separated by a tricritical line, and the domain of the first-order transition of the gas-liquid-type separated from the homogeneous state by a critical line. Theoretical predictions are shown to be in qualitative agreement with the grand canonical Monte Carlo simulations. The peculiarities of the phase diagram give an insight into different types of behavior of the open circuit voltage observed in rechargeable batteries, in which an intercalation compound is used as an electrode material.
机译:我们基于存在主体原子的间隙之间的有效相互作用,提出了一种插层化合物的自洽平均场晶格气体理论。除了通常在晶格气体模型中讨论的短程屏蔽库仑斥力外,本理论还考虑了由于基质的弹性而在插入剂之间产生的远距离有效吸引力。相互作用参数空间中的平均场相图包含由三临界线分隔的无序型一阶和二阶跃迁域,以及气液一阶跃迁域型由临界线与均质状态分开。理论预测显示出与经典的蒙特卡洛模拟的定性吻合。相图的特殊性让我们深入了解了可充电电池中观察到的不同类型的开路电压行为,其中将插层化合物用作电极材料。

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