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Polymethylhydrosiloxane-Coated Ammonium Dinitramide: A Simple Strategy to Moisture-Resistant and Insensitive
Anh Thuc Bui1,2, Quang Hieu Pham2, Van Toai Pham2
1Institute of Materials, Biology and Environment, 17 Hoang Sam, Hanoi 100000, Vietnam.
None:
Ammonium dinitramide (ADN) is a promising, environmentally friendly oxidizer for next-generation solid propellants. However, its high hygroscopicity and sensitivity to mechanical stimuli significantly hinder its practical applications. Here, ADN-polymethylhydrosiloxane (ADN-PMHS) composite microspheres were prepared via solvent-antisolvent crystallization, followed by a simple surface coating step. The morphology, chemical structure, thermal behavior, hygroscopicity, and mechanical sensitivity of the coated microspheres were systematically characterized. Results revealed that PMHS formed a uniform, continuous hydrophobic layer on the ADN crystal surfaces, yielding well-dispersed spherical particles. At an optimal PMHS content of 0.5 wt % (ADN-0.5%PMHS), the composite exhibited 54.8% lower moisture uptake after 25 h at 60% relative humidity and a 1.6 times reduction in impact sensitivity compared with raw ADN. Moreover, the activation energy increased from 164.44 to 184.96 kJ/mol, indicating improved thermal stability, while the decomposition temperature remained nearly unchanged. These findings demonstrate that ADN-0.5%PMHS microspheres possess enhanced moisture resistance, mechanical insensitivity, and thermal stability, making them highly attractive for advanced, environmentally sustainable solid-propellant formulations.
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