The study of computational chemistry simulation of Ferrocene for solid propellant

O. Srihakulung
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Abstract

Ferrocene (Fe(C5H5)2) is an organometallic compound which its structure consists of two cyclopentadienyl (Cp) rings bound on opposite sides of a central metal atom. This compound is usually added into rocket's solid propellant as a burning rate catalyst. However, this composition always migrates from the propellant system by both diffusion and surface migration mechanism that causes the unpredictability of the burning rate which in turn renders unpredictable rocket performance Therefore, the study of the method to investigate the role of Ferrocene in biological systems is highly significant. This paper proposes the use of molecular simulation to study the properties of Ferrocene molecular systems to get a deeper understanding of the physics of electronic correlation in real materials. The result from the studies shows that Gaussian and Monte Carlo is the suitable method to simulate the role of Ferrocene in biological systems.
二茂铁固体推进剂的计算化学模拟研究
二茂铁(Fe(C5H5)2)是一种有机金属化合物,其结构由两个环戊二烯(Cp)环在中心金属原子的相对两侧组成。这种化合物通常作为燃速催化剂添加到火箭的固体推进剂中。然而,这种成分总是通过扩散和表面迁移机制从推进剂系统中迁移,导致燃烧速度的不可预测性,从而导致火箭性能的不可预测性。因此,研究二茂铁在生物系统中的作用的方法具有重要意义。本文提出利用分子模拟的方法来研究二茂铁分子体系的性质,以便更深入地了解实际材料中电子相关的物理性质。研究结果表明,高斯和蒙特卡罗是模拟二茂铁在生物系统中的作用的合适方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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