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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Toward a Process-Based Molecular Model of SiC Membranes. 2. Reactive Dynamics Simulation of the Pyrolysis of Polymer Precursor To Form Amorphous SiC
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Toward a Process-Based Molecular Model of SiC Membranes. 2. Reactive Dynamics Simulation of the Pyrolysis of Polymer Precursor To Form Amorphous SiC

机译:建立基于过程的SiC膜分子模型。 2.聚合物前驱体热解形成非晶SiC的反应动力学模拟

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In part 1 of this series we developed the reactive force field ReaxFF, choosing the parameters adjusted to fit quantum mechanics description of prototypical reactions. In the present paper we use ReaxFF for reactive dynamics (RD) simulation of thermal decomposition of a silicon-containing polymer, hydridopolycarbosilane (HPCS) over a wide range of temperature. Many properties of the material during its pyrolysis were computed and were found to be in good agreement with the experimental data. We then simulated pyrolysis of the HPCS under conditions that closely mimic the conditions of the fabrication of nanoporous SiC membranes to produce amorphous SiC material. Again, the computed properties of the SiC ceramic were found to be in good agreement with the experimental data. In particular, the ReaxFF RD simulations generate ceramic SiC that contains mostly Si-C bonds with some Si-Si and C-C bonds, consistent with experimental data. This indicates again the accuracy of the parameters of the ReaxFF determined in Part 1.
机译:在本系列的第1部分中,我们开发了反作用力场ReaxFF,选择了为适应原型反应的量子力学描述而调整的参数。在本文中,我们将ReaxFF用于反应动力学(RD)模拟含硅聚合物氢化聚碳硅烷(HPCS)在较宽温度范围内的热分解。计算了该材料在热解过程中的许多特性,发现与实验数据非常吻合。然后,我们模拟了在紧密模拟纳米多孔SiC膜制造条件以生产非晶SiC材料的条件下HPCS的热解。再次,发现SiC陶瓷的计算性能与实验数据良好吻合。特别是,ReaxFF RD模拟生成的陶瓷SiC主要包含具有某些Si-Si和C-C键的Si-C键,与实验数据一致。这再次表明了第1部分中确定的ReaxFF参数的准确性。

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