【2h】

Binary nanoparticle superlattices of soft-particle systems

机译:软粒子系统的二元纳米粒子超晶格

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摘要

The solid-phase diagram of binary systems consisting of particles of diameter σA = σ and σB = γσ (γ ≤ 1) interacting with an inverse p = 12 power law is investigated as a paradigm of a soft potential. In addition to the diameter ratio γ that characterizes hard-sphere models, the phase diagram is a function of an additional parameter that controls the relative interaction strength between the different particle types. Phase diagrams are determined from extremes of thermodynamic functions by considering 15 candidate lattices. In general, it is shown that the phase diagram of a soft repulsive potential leads to the morphological diversity observed in experiments with binary nanoparticles, thus providing a general framework to understand their phase diagrams. Particular emphasis is given to the two most successful crystallization strategies so far: evaporation of solvent from nanoparticles with grafted hydrocarbon ligands and DNA programmable self-assembly.
机译:研究了由直径为σA=σ和σB=γσ(γ≤1)的粒子与反p = 12幂定律相互作用的二元系统的固相图,作为软势范式。除了表征硬球模型的直径比γ以外,相图还取决于其他参数的功能,该参数控制不同颗粒类型之间的相对相互作用强度。通过考虑15个候选晶格从热力学函数的极端确定相图。通常,显示出软排斥势的相图导致在用二元纳米颗粒进行的实验中观察到的形态多样性,从而提供了理解其相图的一般框架。到目前为止,特别强调了两种最成功的结晶策略:从具有接枝烃配体的纳米颗粒中蒸发溶剂,以及DNA可编程自组装。

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