High-energy metal–organic frameworks (HE-MOFs): Synthesis, structure and energetic performance
S Zhang, Q Yang, X Liu, X Qu, Q Wei, G Xie… - Coordination Chemistry …, 2016 - Elsevier
Recent progress in high-energy metal–organic frameworks (HE-MOFs), not only a
burgeoning branch of growing interest in energetic materials but also a particular class of …
burgeoning branch of growing interest in energetic materials but also a particular class of …
Explosives in the cage: metal–organic frameworks for high‐energy materials sensing and desensitization
An overview of the current status of coordination polymers and metal–organic frameworks
(MOFs) pertaining to the field of energetic materials is provided. The explosive applications …
(MOFs) pertaining to the field of energetic materials is provided. The explosive applications …
Ionic polymers as a new structural motif for high-energy-density materials
OS Bushuyev, P Brown, A Maiti, RH Gee… - Journal of the …, 2012 - ACS Publications
Energetic materials have been used for nearly two centuries in military affairs and to cut
labor costs and expedite laborious processes in mining, tunneling, construction, demolition …
labor costs and expedite laborious processes in mining, tunneling, construction, demolition …
Metal-organic frameworks as high explosives: a new concept for energetic materials.
Q Zhang, JM Shreeve - Angewandte Chemie International …, 2014 - search.ebscohost.com
Abstract Energetic MOFs with 1D, 2D, or 3D structures were synthesized through a self‐
assembly strategy by using energetic organic linkers to bridge non‐toxic metal ions. This …
assembly strategy by using energetic organic linkers to bridge non‐toxic metal ions. This …
Coordination polymers with high energy density: An emerging class of explosives
KA McDonald, S Seth, AJ Matzger - Crystal Growth & Design, 2015 - ACS Publications
Coordination polymers (CPs) have recently emerged as a promising class of high energy
materials useful for the synthesis of tailored energetic materials. CPs have shown potential …
materials useful for the synthesis of tailored energetic materials. CPs have shown potential …
Review of the decomposition and energy release mechanisms of novel energetic materials
K Zhong, C Zhang - Chemical Engineering Journal, 2024 - Elsevier
Nowadays, some new materials with high-energy as well as a certain stability are emerging
as the novel energetic materials (EMs), such as all-nitrogen energetic ionic compounds …
as the novel energetic materials (EMs), such as all-nitrogen energetic ionic compounds …
Thermal studies of novel molecular perovskite energetic material (C6H14N2)[NH4 (ClO4) 3]
J Zhou, L Ding, F Zhao, B Wang, J Zhang - Chinese Chemical Letters, 2020 - Elsevier
Abstract (C 6 H 14 N 2)[NH 4 (ClO 4) 3] is a newly developed porous hybrid inorganic-
organic framework material with easy access and excellent detonation performances …
organic framework material with easy access and excellent detonation performances …
Coordination chemistry with 1-methyl-5 H-tetrazole: cocrystallization, laser-ignition, lead-free primary explosives–one ligand, three goals
N Szimhardt, MHH Wurzenberger, A Beringer… - Journal of Materials …, 2017 - pubs.rsc.org
The synthesis and characterization of 1-methyl-5H-tetrazole (1, MTZ) from 1, 5H-tetrazole
and methyl iodide is achieved. This neutral ligand was evaluated for its use in energetic …
and methyl iodide is achieved. This neutral ligand was evaluated for its use in energetic …
Framework-interpenetrated nitrogen-rich Zn (II) Metal–Organic Frameworks for energetic materials
JD Lin, F Chen, JG Xu, FK Zheng… - ACS Applied Nano …, 2019 - ACS Publications
Nitrogen-rich high density metal–organic frameworks (MOFs) can be used as a new type of
energetic materials. The energetic MOFs provide a new method to reconcile contradiction …
energetic materials. The energetic MOFs provide a new method to reconcile contradiction …
A Highly Energetic N‐Rich Metal–Organic Framework as a New High‐Energy‐Density Material
Abstract Metal–organic framework (MOF)‐based energetic material [Cu3 (MA) 2 (N3) 3](1;
MA= melamine) was synthesized and structurally characterized (47.55% N). The structural …
MA= melamine) was synthesized and structurally characterized (47.55% N). The structural …