Initial Mechanisms for the Decomposition of Electronically Excited Energetic Salts: TKX-50 and MAD-X1
Author:
Affiliation:
1. Department of Chemistry, Colorado State University, Fort Collins, Colorado 80523-1872, United States
Funder
Army Research Office
Publisher
American Chemical Society (ACS)
Subject
Physical and Theoretical Chemistry
Link
https://pubs.acs.org/doi/pdf/10.1021/jp510995z
Reference60 articles.
1. Pushing the limits of energetic materials – the synthesis and characterization of dihydroxylammonium 5,5′-bistetrazole-1,1′-diolate
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3. Energetic salts of 5,5′-bis(tetrazole-2-oxide) in a comparison to 5,5′-bis(tetrazole-1-oxide) derivatives
4. High Power Explosive with Good Sensitivity: A 2:1 Cocrystal of CL-20:HMX
5. Nitrogen‐Rich Salts of 1 H ,1′ H ‐5,5′‐Bitetrazole‐1,1′‐diol: Energetic Materials with High Thermal Stability
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1. Incorporation of CL-20 into TKX-50 to improve thermal reactivity;Journal of Energetic Materials;2023-07-26
2. Effects of TKX ‐50 on the Performance of Solid Propellants and Explosives;Nano and Micro‐Scale Energetic Materials;2023-01-27
3. Molecular dynamics simulations of dihydroxylammonium 5,5′-bistetrazole-1,1′-diolate (TKX-50) and TKX-50-based PBXs with four energetic binders;e-Polymers;2023-01-01
4. High-pressure induced structural changes of energetic ionic salts: Dihydroxylammonium 3,3′-dinitro-5,5′-bis-1,2,4-triazole-1,1′-diolate (MAD-X1);Chemical Physics;2023-01
5. Theoretical study on intra-molecule interactions in TKX-50;Physical Chemistry Chemical Physics;2023
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