...
首页> 外文期刊>Advanced Functional Materials >Development And Testing Of Energetic Materials: The Concept Of High Densities Based On The Trinitroethyl Functionality
【24h】

Development And Testing Of Energetic Materials: The Concept Of High Densities Based On The Trinitroethyl Functionality

机译:含能材料的开发和测试:基于三硝基乙基官能团的高密度概念

获取原文
获取原文并翻译 | 示例
           

摘要

The development of new energetic materials is an emerging area of materials chemistry facilitated by a worldwide need to replace materials used at present, due to environmental considerations and safety requirements, while at the same time securing high performance. The development of such materials is complex, owing to the fact that several different and apparently mutually exclusive material properties have to be met in order for a new material to become widely accepted. In turn, understanding the basic principles of structure property relationships is highly desirable, as such an understanding would allow for a more rational design process to yield the desired properties. This article covers the trinitroethyl functionality and its potential for the design of next generation energetic materials, and describes relevant aspects of energetic materials chemistry including theoretical calculations capable of reliably predicting material properties. The synthesis, characterization, energetic properties, and structure property relationships of several new promising compounds displaying excellent material properties are reported with respect to different kinds of applications and compared to standard explosives currently used. Based on a review of trinitroethyl-containing compounds available in the literature, as well as this new contribution, it is observed that high density can generally be obtained in a more targeted manner in energetic materials taking advantage of noncovalent bonding interactions, a prerequisite for the design of next generation energetic materials.
机译:由于对环境的考虑和安全要求,在确保高性能的同时,由于全球范围内需要替换当前使用的材料,新的高能材料的开发是材料化学的新兴领域。由于必须满足几种不同且显然互斥的材料特性,这样一种新材料才能被广泛接受,因此这种材料的开发非常复杂。反过来,非常需要了解结构属性关系的基本原理,因为这样的理解将允许更合理的设计过程来产生所需的属性。本文介绍了三硝基乙基官能团及其在下一代高能材料设计中的潜力,并介绍了高能材料化学的相关方面,包括能够可靠地预测材料性能的理论计算。报告了几种显示出优异材料性能的新有前途化合物的合成,表征,高能性能和结构性能之间的关系,这些化合物具有不同的用途,并与目前使用的标准炸药进行了比较。基于对文献中可获得的含三硝基乙基化合物的综述以及这一新的贡献,可以观察到,通常可以利用非共价键相互作用,以更有针对性的方式在高能材料中获得高密度,这是非共价键相互作用的前提。下一代高能材料的设计。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号