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首页> 外文期刊>ACS nano >Asymmetric van der Waals Forces Drive Orientation of Compositionally Anisotropic Nanocylinders within Smectic Arrays: Experiment and Simulation
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Asymmetric van der Waals Forces Drive Orientation of Compositionally Anisotropic Nanocylinders within Smectic Arrays: Experiment and Simulation

机译:不对称范德华力驱动近晶阵列内组成各向异性纳米圆柱体的取向:实验和仿真

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摘要

Understanding how micro- and nanoparticles interact is important for achieving bottom-up assembly of desired structures. Here, we examine the self-assembly of two-component, compositionally asymmetric nanocylinders that sediment from solution onto a solid surface. These particles spontaneously formed smectic arrays. Within the rows of an array, nanocylinders tended to assemble such that neighboring particles had the same orientation of their segments. As a probe of interparticle interactions, we classified nanocylinder alignments by measuring the segment orientations of many sets of neighboring particles. Monte Carlo simulations incorporating an exact expression for the van der Waals (vdW) energy indicate that differences in the vdW interactions, even when small, are the key factor in producing observed segment alignment. These results point to asymmetrical vdW interactions as a potentially powerful means of controlling orientation in multicomponent cylinder arrays, and suggest that designing for these interactions could yield new ways to control self-assembly.
机译:了解微颗粒和纳米颗粒之间的相互作用方式对于实现所需结构的自底向上组装至关重要。在这里,我们检查了由溶液沉淀到固体表面上的两组分,组成不对称的纳米圆柱的自组装。这些粒子自发形成近晶阵列。在阵列的行内,纳米圆柱体倾向于聚集,使得相邻的粒子具有与其片段相同的取向。作为粒子间相互作用的探针,我们通过测量许多相邻粒子的片段方向来对纳米圆柱排列进行分类。蒙特卡罗模拟结合了范德华(vdW)能量的精确表达式表明,即使很小,vdW相互作用的差异也是产生观察到的片段对齐的关键因素。这些结果表明,不对称的vdW相互作用是控制多组分圆柱体阵列方向的潜在强大手段,并表明针对这些相互作用的设计可能会产生控制自组装的新方法。

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