Azide-Based High-Energy Metal-Organic Frameworks with Enhanced Thermal Stability
Abstract
We describe the structure and properties of [Zn(C6H4N5)N-3](n), a new nonporous three-dimensional high-energy metal-organic framework (HE-MOF) with enhanced thermal stability. The compound is synthesized by the hydrothermal method with in situ ligand formation under controlled pH and characterized using single-crystal X-ray diffraction, elemental analysis, and Fourier transform infrared. The measured detonation temperature (T-det = 345 degrees C) and heat of detonation (Delta H-det = -0.380 kcal/g) compare well with commercial explosives and other nitrogen-rich HE-MOFs. The velocity and pressure of denotation are 5.96 km/s and 9.56 GPa, respectively. Differential scanning calorimetry analysis shows that the denotation of [Zn(C6H4N5)N-3](n) occurs via a complex temperature-dependent mechanism.
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Título según WOS: | Azide-Based High-Energy Metal-Organic Frameworks with Enhanced Thermal Stability |
Título según SCOPUS: | Azide-Based High-Energy Metal-Organic Frameworks with Enhanced Thermal Stability |
Título de la Revista: | ACS OMEGA |
Volumen: | 4 |
Número: | 11 |
Editorial: | AMER CHEMICAL SOC |
Fecha de publicación: | 2019 |
Página de inicio: | 14398 |
Página final: | 14403 |
Idioma: | English |
DOI: |
10.1021/acsomega.9b01127 |
Notas: | ISI, SCOPUS - ISI |