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Quantitative prediction of the position and orientation for an octahedral nanoparticle at liquid/liquid interfaces

机译:位置和定量预测一个八面体纳米颗粒的取向液/液界面

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摘要

Shape-controlled polyhedral particles and their assembled structures have important applications in plasmonics and biosensing, but the interfacial configurations that will critically determine their resultant assembled structures are not well-understood. Hence, a reliable theory is desirable to predict the position and orientation of a polyhedron at the vicinity of a liquid/liquid interface. Here we demonstrate that the free energy change theory can quantitatively predict the position and orientation of an isolated octahedral nanoparticle at a liquid/liquid interface, whose vertices and facets can play crucial roles in biosensing. We focus on two limiting orientations of an octahedral nanoparticle, vertex up and facet up. Our proposed theory indicates that the surface wettability (hydrophilic/hydrophobic ratio) of the nanoparticle determines its most stable position and the preferred orientation at a water/oil interface. The surface wettability of an octahedron is adjusted from extremely hydrophobic to extremely hydrophilic by changing the amount of charge on the Ag surface in molecular dynamics (MD) simulations. The MD simulations results are in excellent agreement with our theoretical prediction for an Ag octahedral nanoparticle at a hexane/water interface. Our proposed theory bridges the gap between molecular-level simulations and equilibrium configurations of polyhedral nanoparticles in experiments, where insights from nanoparticle intrinsic wettability details can be used to predict macroscopic superlattice formation experimentally. This work advances our ability to precisely predict the final structures of the polyhedral nanoparticle assemblies at a liquid/liquid interface.
机译:Shape-controlled多面体颗粒和他们组装结构有重要的应用在等离子和若,但是界面非常确定的配置他们的合成组装结构很好理解的。理想的预测位置和姿态多面体的附近液/液界面。自由能变化理论可以定量预测的位置和姿态孤立的八面体纳米颗粒在液/液界面的顶点在若方面发挥至关重要的作用。关注两个限制的方向八面体纳米颗粒,顶点方面。我们建议的理论表明,表面润湿性(亲水/疏水比)纳米颗粒决定其最稳定位置和择优取向的水/油界面。一个八面体从极其调整疏水非常亲水通过改变Ag)表面上的电荷量分子动力学(MD)模拟。仿真结果很好的协议与我们的理论预测Ag)八面体纳米颗粒在己烷/水接口。在分子水平上模拟和均衡配置的多面在实验中,纳米颗粒的见解纳米颗粒固有润湿性的细节用来预测宏观超晶格形成实验。能够精确地预测最终的结构多面纳米粒子组装的液/液界面。

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