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首页> 外文期刊>Physica, A. Statistical mechanics and its applications >Effect of gold nanoparticles on structure and dynamics of binary Lennard-Jones liquid: Wave-vector space analysis
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Effect of gold nanoparticles on structure and dynamics of binary Lennard-Jones liquid: Wave-vector space analysis

机译:金纳米粒子对二元Lennard-Jones液体的结构和动力学的影响:波向量空间分析

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Molecular dynamics simulations at constant (N, V, T) are used to study the mutual effects of gold nanoparticles on the structure and dynamics of Kob-Andersen binary Lennard-Jones (BLJ) liquid within the framework of mode coupling theory of dynamic glass transition in the reciprocal space. The results show the 'softening' effect of the gold nanoparticles on the liquid dynamics in terms of (i) reducing the mode coupling crossover temperature T-c with respect to that of the bulk BLJ (i.e. BLJ without nanoparticles), (ii) decreasing the time interval of, beta-relaxation, and (iii) decreasing the exponent gamma characterizing the power-law behavior of the alpha-relaxation time. This softening effect is explained in terms of the van der Waals attraction between the gold atoms comprising the nanoparticle and the BLJ host atoms, such that adsorption of host atoms onto the nanoparticle surface creates more space or free-volume for the other atoms to diffuse. By the same token interactions of purely excluded-volume-type are expected to result in the opposite effect. It is also noted that, much unlike BLJ host particles, the dynamics of gold nanoparticles is much less dependent on the wave-vector and that it exhibits a nearly exponential behavior in the alpha-relaxation regime. (C) 2016 Elsevier B.V. All rights reserved.
机译:在恒定的(N,V,T)分子动力学模拟中,研究了动态玻璃化转变的模态耦合理论框架下金纳米颗粒对Kob-Andersen二元Lennard-Jones(BLJ)液体的结构和动力学的相互作用。在对等空间。结果表明,金纳米颗粒对液体动力学的“软化”作用是:(i)相对于本体BLJ(即没有纳米颗粒的BLJ)降低了模式耦合交叉温度Tc,(ii)减少了时间β松弛的间隔,以及(iii)减小表征α松弛时间的幂律行为的指数伽马。根据构成纳米粒子的金原子和BLJ主体原子之间的范德华吸引力来解释这种软化效果,这样主体原子在纳米粒子表面上的吸附会为其他原子扩散创造更多的空间或自由体积。同样,纯排他体积类型的相互作用预计会产生相反的效果。还应注意的是,与BLJ主体颗粒非常不同,金纳米颗粒的动力学对波矢量的依赖性小得多,并且在α松弛条件下表现出近乎指数的行为。 (C)2016 Elsevier B.V.保留所有权利。

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