The enhanced thermal stability and reduced hygroscopicity of aluminum hydride coated with vinyltrimethoxysilane
Alpha-aluminum hydride (α-AlH 3 ) is an excellent high-energy additive for solid propellants because of its high hydrogen content (10.8 wt%) and energy density, low decomposition temperature, and good combustion performance. However, the application of α-AlH 3 is limited by its poor thermal stabilit...
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Veröffentlicht in: | New journal of chemistry 2022-01, Vol.46 (4), p.1643-1649 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Alpha-aluminum hydride (α-AlH
3
) is an excellent high-energy additive for solid propellants because of its high hydrogen content (10.8 wt%) and energy density, low decomposition temperature, and good combustion performance. However, the application of α-AlH
3
is limited by its poor thermal stability and hygroscopicity. In this work, we present a facile method to improve the thermal stability and hygroscopicity of α-AlH
3
by coating the α-AlH
3
surface with an organic layer using vinyltrimethoxysilane (A171). The α-AlH
3
@A171 composite shows enhanced performance in terms of thermal stability and hygroscopic properties. In the constant temperature experiments at 100 °C, the required time to lose 1% mass of α-AlH
3
@A171 is 561.5 minutes, showing excellent stability. More importantly, the resulting α-AlH
3
@A171 composite exhibits an increased activation energy of 4.32 kJ mol
−1
after stabilization. Furthermore, the α-AlH
3
@A171 composite also shows excellent performance in resisting water erosion, and the hydrophobic angle increases from 24.23° to 96.94° after the organic layer is coated on the α-AlH
3
surface. The hygroscopic weight gain of α-AlH
3
@A171 was only 0.89% when stored at 30 °C and 80% relative humidity for 30 days, which was lower than that of α-AlH
3
(23.1%). This work provides a convenient method for the safe application of α-AlH
3
in the field of solid propellants. |
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ISSN: | 1144-0546 1369-9261 |
DOI: | 10.1039/D1NJ05582H |