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基于分子动力学方法的潜在含能材料CL-20/DNAN低共熔炸药的理论研究

Theoretical study of potential energetic material CL-20/DNAN eutectic explosive based on molecular dynamics method.

作者信息

Du Jihang, Wang Baoguo, Chen Yafang, Li Xinyi, Wang Chunguang

机构信息

School of Environmental and Safety Engineering, North University of China, Taiyuan, 030051, China.

Jinxi Group Jiangyang Company, Taiyuan, 030000, China.

出版信息

J Mol Model. 2024 Aug 19;30(9):311. doi: 10.1007/s00894-024-06109-6.

Abstract

CONTEXT

The exploration of CL-20 eutectic has been a subject of fervent interest within the realm of high-energy material modification. Through the utilization of density functional and molecular dynamics methods, an investigation into the characteristics of hexanitrohexaazaisowurtzitane (CL-20)/2,4-dinitroanisole (DNAN) within the molar ratio range of 9:1-1:9 was conducted. This inquiry encompassed the scrutiny of molecular interaction pathway, attachment force, initiating molecular distance, unified energy concentration, and physical characteristics. Furthermore, EXPLO-5 was harnessed to prognosticate the explosion features and byproducts of unadulterated CL-20, DNAN, and CL-20/DNAN frameworks. The findings delineate a substantial differentiation in the electrostatic charge distribution on the surface between CL-20 and DNAN particles, signifying the preeminence of intermolecular interactions between disparate entities over those within similar entities, thus intimating the plausibility of eutectic constitution. Remarkably, the identification of maximal attachment force at a molar ratio of 4:6 suggests the heightened likelihood of eutectic formation, propelled primarily by electrostatic and van der Waals forces. The resultant eutectic explosive evinces intermediate reactivity and exemplary mechanical attributes. Moreover, the detonation achievement of the eutectic with a molar proportion of 4:6 straddles that of CL-20 and DNAN, representing a new type of insensitive high-energy material.

METHODS

The testing method employs the Materials Studio software and utilizes the molecular dynamics (MD) method to predict the properties of CL-20/DNAN co-crystals with different ratios and crystal faces. The MD simulation time step is set to 1 fs, and the total MD simulation time is 2 ns. An isothermal-isobaric (NPT) ensemble is used for the 2-ns MD simulation. The COMPASS force field is employed, with the temperature set to 295 K. The prediction of detonation characteristics and products is conducted using the EXPLO-5 software.

摘要

背景

六硝基六氮杂异伍兹烷(CL-20)低共熔物的探索一直是高能材料改性领域备受关注的课题。通过运用密度泛函和分子动力学方法,对摩尔比范围为9:1至1:9的六硝基六氮杂异伍兹烷(CL-20)/2,4-二硝基苯甲醚(DNAN)的特性进行了研究。该研究涵盖了分子相互作用途径、附着力、引发分子距离、统一能量浓度和物理特性的考察。此外,利用EXPLO-5预测了纯CL-20、DNAN和CL-20/DNAN体系的爆炸特性及副产物。研究结果表明,CL-20和DNAN颗粒表面的静电荷分布存在显著差异,这意味着不同实体之间的分子间相互作用优于相似实体内部的相互作用,从而暗示了形成低共熔物的可能性。值得注意的是,在摩尔比为4:6时确定了最大附着力,这表明主要由静电力和范德华力推动,形成低共熔物的可能性增加。所得的低共熔炸药表现出中等反应活性和优异的机械性能。此外,摩尔比为4:6的低共熔物的爆轰性能介于CL-20和DNAN之间,代表了一种新型钝感高能材料。

方法

测试方法采用Materials Studio软件,并利用分子动力学(MD)方法预测不同比例和晶面的CL-20/DNAN共晶体的性能。MD模拟时间步长设置为1飞秒,MD模拟总时间为2纳秒。2纳秒的MD模拟采用等温等压(NPT)系综。采用COMPASS力场,温度设置为295 K。使用EXPLO-5软件进行爆轰特性和产物的预测。

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