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Computational modeling of nanorod growth

机译:纳米棒生长的计算模型

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In this computational study, we used molecular dynamics and the embedded atom method to successfully reproduce the growth of gold nanorod morphologies from starting spherical seeds in the presence of model surfactants. The surfactant model was developed through extensive systematic attempts aimed at inducing nonisotropic nanoparticle growth in strictly isotropic computational growth environments. The aim of this study was to identify key properties of the surfactants which were most important for the successful anisotropic growth of nanorods. The observed surface and collective dynamics of surfactants shed light on the likely growth phenomena of real nanoprods. These phenomena include the initial thermodynamically driven selective adsorption, segregation, and orientation of the surfactant groups on specific crystallographic surfaces of spherical nanoparticle seeds and the kinetic elongation of unstable surfaces due to growth inhibiting surfactants on those surfaces. Interestingly, the model not only reproduced the growth of nearly all known nanorod morphologies when starting from an initial fcc or fivefold seed but also reproduced the experimentally observed failure of nanorod growth when starting from spherical nanoparticles such as the Ih morphology or morphologies containing a single twinning plane. Nanorod morphologies observed in this work included fivefold nanorods, fcc crystalline nanorods in the [100] direction and [112] directions and the more exotic "dumbell-like" nanorods. Non-nanorod morphologies observed included the Ih and the nanoprism morphology. Some of the key properties of the most successful surfactants seemed to be suggestive of the important but little understood role played by silver ions in the growth process of real nanorods.
机译:在此计算研究中,我们使用分子动力学和嵌入式原子方法成功地从存在模型表面活性剂的情况下,从起始球形种子重现了金纳米棒形态的生长。表面活性剂模型是通过广泛的系统尝试开发的,旨在在严格各向同性的计算生长环境中诱导非各向同性的纳米颗粒生长。这项研究的目的是确定表面活性剂的关键特性,这些特性对于纳米棒的成功各向异性生长最重要。观察到的表面活性剂的表面和集体动力学揭示了真正的纳米产品可能的生长现象。这些现象包括球形表面纳米粒子种子的特定晶体表面上表面活性剂基团的初始热力学驱动的选择性吸附,偏析和取向,以及由于在这些表面上生长受到抑制的表面活性剂而导致的不稳定表面的动力学伸长。有趣的是,该模型不仅从初始fcc或五倍种子开始再现了几乎所有已知纳米棒形态的生长,而且还从球形I / O形态或包含单个孪晶的形态再现了从实验观察到的纳米棒生长的失败。飞机。在这项工作中观察到的纳米棒形态包括五倍的纳米棒,在[100]方向和[112]方向上的fcc晶体纳米棒以及更奇特的“哑铃状”纳米棒。观察到的非纳诺德形态包括Ih和纳米棱镜形态。最成功的表面活性剂的某些关键特性似乎暗示了银离子在真实纳米棒的生长过程中所起的重要但尚不为人所理解的作用。

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