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含能共晶体最常见组分的毒性效应

Toxic Effects of the Most Common Components of Energetic Co-Crystals.

作者信息

Peng Xinying, Li Cunzhi, Li Huan, Deng Hui, Lv Xiaoqiang, Gao Ting, Shen Jiachen, Zhao Bin, Liu Zhiyong, Gao Junhong

机构信息

Toxicology Research Center, Institute for Hygiene of Ordnance Industry, NO. 12 Zhangbadong Road, Yanta District, Xi'an 710065, China.

Xi'an Key Laboratory of Toxicology and Biological Effects, NO. 12 Zhangbadong Road, Yanta District, Xi'an 710065, China.

出版信息

Molecules. 2025 Aug 1;30(15):3234. doi: 10.3390/molecules30153234.

Abstract

Hexanitrohexaazaisowurtzitane (CL-20) is a high-energy-density material known for its exceptional explosive performance, but it suffers from significant safety concerns due to its high sensitivity. To mitigate this issue, researchers have explored the synthesis of CL-20-based cocrystals with other energetic materials to achieve a balance between energy output and safety. Recent advancements in CL-20 cocrystals have focused on developing novel synthesis methods and leveraging computational design techniques to predict and optimize their physicochemical properties. However, the toxicity of CL-20 cocrystals, along with their environmental and health risks, remains a critical concern. This review systematically examines recent progress in CL-20 cocrystal energetic materials, emphasizing toxicity profiles and mechanistic insights into their components. The findings serve as a foundation for the development of safer energetic materials, thereby facilitating sustainable advancements in manufacturing technologies and industrial applications of CL-20.

摘要

六硝基六氮杂异伍兹烷(CL-20)是一种高能密度材料,以其卓越的爆炸性能而闻名,但由于其高灵敏度,存在重大安全隐患。为缓解这一问题,研究人员探索了CL-20基共晶与其他含能材料的合成,以在能量输出和安全性之间取得平衡。CL-20共晶的最新进展集中在开发新型合成方法以及利用计算设计技术来预测和优化其物理化学性质。然而,CL-20共晶的毒性及其环境和健康风险仍然是一个关键问题。本综述系统地研究了CL-20共晶含能材料的最新进展,强调了其毒性概况及其成分的作用机制。这些发现为开发更安全的含能材料奠定了基础,从而推动CL-20制造技术和工业应用的可持续发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/77bd/12348795/654e95758a36/molecules-30-03234-g001.jpg

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