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首页> 外文期刊>The Journal of Chemical Physics >On one-dimensional self-assembly of surfactant-coated nanoparticles
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On one-dimensional self-assembly of surfactant-coated nanoparticles

机译:表面活性剂包覆纳米粒子的一维自组装

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摘要

Nanometer-sized metal and semiconductor particles possess novel properties.To fully realize their potential,these nanoparticles need to be fabricated into ordered arrays or predesigned structures.A promising nanoparticle fabrication method is coupled surface passivation and self-assembly of surfactant-coated nanoparticles.Due to the empirical procedure and partially satisfactory results,this method still represents a major challenge to date and its refinement can benefit from fundamental understanding.Existing evidences suggest that the self-assembly of surfactant-coated nanoparticles is induced by surfactant-modified interparticle interactions and follows an intrinsic road map such that short one-dimensional (1D) chain arrays of nanoparticles occur first as a stable intermediate before further assembly takes place to form higher dimensional close-packed superlattices.Here we report a study employing fundamental analyses and Brownian dynamics simulations to elucidate the underlying pair interaction potential that drives the nanoparticle self-assembly via 1D arrays.We find that a pair potential which has a longer-ranged repulsion and reflects the effects of surfactant chain interdigitation on the dynamics is effective in producing and stabilizing nanoparticle chain arrays.The resultant potential energy surface is isotropic for dispersed nanoparticles but becomes anisotropic to favor the growth of linear chain arrays when self-assembly starts.
机译:纳米级的金属和半导体颗粒具有新颖的特性。要充分发挥其潜力,需要将这些纳米颗粒制造成有序阵列或预先设计的结构。一种有前途的纳米颗粒制造方法是表面钝化和表面活性剂涂覆的纳米颗粒的自组装耦合。对于经验方法和部分令人满意的结果,该方法仍然是迄今为止的主要挑战,其改进可以受益于基本理解。现有证据表明,表面活性剂包覆的纳米粒子的自组装是由表面活性剂修饰的粒子间相互作用引起的,并且遵循固有的路线图,使得短的纳米粒子的一维(1D)短链阵列首先作为稳定的中间体出现,然后再进行进一步组装以形成更高维的密堆积超晶格。阐明基本的排通过一维阵列驱动纳米粒子自组装的r相互作用势,我们发现具有更长程排斥力并反映表面活性剂链交叉指对动力学影响的成对势能有效生产和稳定纳米粒子链阵列。势能面对于分散的纳米粒子是各向同性的,但是当自组装开始时,它变为各向异性以有利于线性链阵列的生长。

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