A novel nanocomposite of MXene/cadmium azide with high detonation performance

Author:

Zhang Lei12ORCID,Cai Junjie3,Wei Chunqiang1,Xie Mingwei1,Peng Yue1ORCID,Yuan Xiaoxia1,Ma Hongliang1

Affiliation:

1. Science and Technology on Applied Physical Chemistry Laboratory, Shaanxi Applied Physics and Chemistry Institute 1 , Xi’an 710061, China

2. State Key Laboratory of Explosion and Technology, Beijing Institute of Technology 2 , Beijing, China

3. School of Materials and Energy, Guangdong University of Technology 3 , Guangzhou 510006, China

Abstract

A novel MXene/cadmium azide nanocomposite with a low input energy and high output power is designed by self-assembly of Cd ions on the MXene layers and subsequent in situ azidation in a solution reaction. The research result shows that cadmium azide nanoparticles with a uniform size of ∼50 nm are well dispersed on the MXene nanosheet’s surface, which is benefited from the rich functional groups on the MXene surface that can effectively immobilize and prevent the aggregation of the nanoparticles through electrostatic interaction. The thermal decomposition temperature (378.42 °C) and crystal structure of cadmium azide show no noticeable change after hybridizing with the MXene; more positively, the required input energy of the MXene/cadmium azide nanocomposite is significantly reduced, which is verified by its electric initiation input voltage of just 4.65 V. In addition, detonation can be realized by loading a less amount of the MXene/cadmium azide nanocomposite. These results demonstrate that the MXene/cadmium azide nanocomposite has the potential to be used as detonators in high-temperature environments.

Funder

The Opening Project of State Key Laboratory of Explosion Science and Technology

Stability Support Program of Key Laboratory

Natural Science Basic Research Program of Shaanxi Province

Publisher

AIP Publishing

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