首页> 外文期刊>Nanotechnology >TOWARDS MECHANOSYNTHESIS OF DIAMONDOID STRUCTURES .1. QUANTUM-CHEMICAL MOLECULAR DYNAMICS SIMULATIONS OF SILA-ADAMANTANE SYNTHESIS ON HYDROGENATED SI(111) SURFACE WITH THE STM
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TOWARDS MECHANOSYNTHESIS OF DIAMONDOID STRUCTURES .1. QUANTUM-CHEMICAL MOLECULAR DYNAMICS SIMULATIONS OF SILA-ADAMANTANE SYNTHESIS ON HYDROGENATED SI(111) SURFACE WITH THE STM

机译:迈向金刚石结构的机械合成.1。用STM模拟加氢合成SI(111)表面上硅碳刚烷的量子化学分子动力学模拟。

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The controlled manipulation of silicon atoms and silylene molecules at the subnanometer scale via the scanning tunnelling microscope (STM) tip provides a potentially powerful way of building silicon diamondoid structures. In this paper, we use quantum-chemical atomistic simulations to explore the feasibility of sila-adamantane mechanosynthesis on a hydrogenated Si(111) surface using the STM tip. A sequence of energetically favourable insertion reactions is established leading to stable surface intermediates and finally to the simplest silicon diamondoid structure. The sequence is based solely on these three reactants with the overall charge neutrality of the structure maintained. We characterize reaction rates and energy flows, and conclude that they are sufficiently fast and simple to make this mechanosynthesis feasible. [References: 58]
机译:通过扫描隧道显微镜(STM)尖端对亚纳米级的硅原子和亚甲硅烷基分子进行受控操纵,为构建硅类金刚石结构提供了潜在的强大方法。在本文中,我们使用量子化学原子模拟来研究使用STM尖端在氢化Si(111)表面上进行硅金刚烷机械合成的可行性。建立了一系列有利于能量的插入反应,从而形成了稳定的表面中间体,并最终形成了最简单的硅类金刚石结构。该顺序仅基于这三种反应物,并保持了结构的总体电荷中性。我们表征了反应速率和能量流,并得出结论,它们足够快且简单,以使该机械合成可行。 [参考:58]

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