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首页> 外文期刊>The Journal of Chemical Physics >Phase behavior and local structure of a binary mixture in pores:Mean-field lattice model calculations for analyzing neutron scattering data
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Phase behavior and local structure of a binary mixture in pores:Mean-field lattice model calculations for analyzing neutron scattering data

机译:孔隙中二元混合物的相行为和局部结构:用于分析中子散射数据的平均场晶格模型计算

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摘要

We investigate the phase behavior of an asymmetric binary liquid A - W mixture confined between two planar homogenous substrates(slit pore).Molecules of species W interact preferentially with the solid walls via a long-range potential.Assuming nearest-neighbor attractions between the liquid molecules,we employ a lattice-gas model and a mean-field approximation for the grand potential.Minimization of this potential yields the density profiles of thermodynamically stable phases for fixed temperature,chemical potentials of both species,pore width and strengths of attraction.This model is used to analyze experimental small-angle neutron-scattering(SANS)data on the microscopic structure of the binary system isobutyric acid(iBA)+ heavy water(D_2O)inside a mesoscopic porous matrix(controlled-pore glass of about 10 nm mean pore width).Confinement-independent model parameters are adjusted so that the theoretical liquid-liquid coexistence curve in the bulk matches its experimental counterpart.By choosing appropriate values of the pore width and the attraction strength between substrates and water we analyze the effect of confinement on the phase diagram.In addition to a depression of the liquid-liquid critical point we observe surface induced phase transitions as well as water-film adsorption near the walls.The temperature dependence of the structure of water-rich and iBA-rich phases of constant composition are discussed in detail.The theoretical predictions are consistent with results of the SANS study and assist their interpretation.
机译:我们研究了一种不对称的二元液体A-W混合物的相行为,该混合物被限制在两个平面均匀的基质(狭缝孔)之间.W类分子通过长距离电势优先与固体壁相互作用。对于分子,我们对大势采用晶格气体模型和均值场近似。最小化此势会产生固定温度的热力学稳定相的密度分布图,两种物质的化学势,孔宽度和引力强度。模型用于分析介观多孔基体(平均孔径约10 nm)内二元体系异丁酸(iBA)+重水(D_2O)的微观结构的实验小角度中子散射(SANS)数据调整与约束无关的模型参数,以使本体中的理论液-液共存曲线与其实验对应物相匹配。选择合适的孔隙宽度值和底物与水之间的吸引力,我们分析了相图上的约束作用。除了降低了液-液临界点外,我们还观察到了表面诱导的相变以及水膜详细讨论了恒定组成的富水相和iBA富相的结构对温度的依赖性。理论预测与SANS研究的结果一致,并有助于其解释。

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