TY - JOUR
T1 - Improvement of the Thermal Decomposition of Ammonium Perchlorate and Combustion of Aluminum Powder by Dual Core-Shell Ammonium Perchlorate-Based Composites Based on Self-Assembly Coating
AU - Gou, Xiaodong
AU - Sun, Xiaole
AU - Yang, Jinxiang
AU - Shi, Jiahui
AU - Yan, Shi
AU - Guo, Xueyong
AU - Yu, Siyu
AU - Nie, Jianxin
N1 - Publisher Copyright:
© 2025 American Chemical Society.
PY - 2025/5/13
Y1 - 2025/5/13
N2 - Ammonium perchlorate (AP), which is the most commonly used oxidant in composite propellants, plays a vital role in the combustion performance of propellants. In this work, by coating the AP surface with a self-assembled coating layer of gallic acid (GA) and transition metal ions (Cu2+ or Fe3+) and then connecting it with a 1H,1H,2H,2H-perfluorodecyltrichlorosilane (PDTS) coating layer, the AP@GA-M@PDTS (M = Cu2+ or Fe3+) composite was successfully prepared. Molecular dynamics simulation calculations show that GA and AP have a good binding ability. At the same time, the binding ability of PDTS and GA is also much higher than that of PDTS and AP. In addition, the peak temperature of high-temperature decomposition and activation energy of AP@GA-M@PDTS (M = Cu2+ or Fe3+) are lower than those of AP, and the heat release during the thermal decomposition process is much higher than AP. Compared with pure AP, the surface coating properties of AP@GA-M@PDTS (M = Cu2+ or Fe3+) have also changed significantly. AP@GA-M@PDTS (M = Cu2+ or Fe3+) can float on water; its static contact angle with the water surface is much higher than that of pure AP, and it absorbs almost no moisture after being placed in humid air for 30 days. Combustion experiments show that the burning speed and burning intensity of AP@GA-M@PDTS (M = Cu2+ or Fe3+)/Al are significantly higher than those of AP/Al, and AP@GA-M@PDTS (M = Cu2+ or Fe3+)/Al has a stronger emission spectrum. Finally, the catalytic mechanism of AP@GA-M@PDTS (M = Cu2+ or Fe3+) to improve the combustion of aluminum powder is discussed. In summary, it is a very promising solid propellant additive.
AB - Ammonium perchlorate (AP), which is the most commonly used oxidant in composite propellants, plays a vital role in the combustion performance of propellants. In this work, by coating the AP surface with a self-assembled coating layer of gallic acid (GA) and transition metal ions (Cu2+ or Fe3+) and then connecting it with a 1H,1H,2H,2H-perfluorodecyltrichlorosilane (PDTS) coating layer, the AP@GA-M@PDTS (M = Cu2+ or Fe3+) composite was successfully prepared. Molecular dynamics simulation calculations show that GA and AP have a good binding ability. At the same time, the binding ability of PDTS and GA is also much higher than that of PDTS and AP. In addition, the peak temperature of high-temperature decomposition and activation energy of AP@GA-M@PDTS (M = Cu2+ or Fe3+) are lower than those of AP, and the heat release during the thermal decomposition process is much higher than AP. Compared with pure AP, the surface coating properties of AP@GA-M@PDTS (M = Cu2+ or Fe3+) have also changed significantly. AP@GA-M@PDTS (M = Cu2+ or Fe3+) can float on water; its static contact angle with the water surface is much higher than that of pure AP, and it absorbs almost no moisture after being placed in humid air for 30 days. Combustion experiments show that the burning speed and burning intensity of AP@GA-M@PDTS (M = Cu2+ or Fe3+)/Al are significantly higher than those of AP/Al, and AP@GA-M@PDTS (M = Cu2+ or Fe3+)/Al has a stronger emission spectrum. Finally, the catalytic mechanism of AP@GA-M@PDTS (M = Cu2+ or Fe3+) to improve the combustion of aluminum powder is discussed. In summary, it is a very promising solid propellant additive.
UR - http://www.scopus.com/inward/record.url?scp=105004067429&partnerID=8YFLogxK
U2 - 10.1021/acs.langmuir.5c00796
DO - 10.1021/acs.langmuir.5c00796
M3 - Article
AN - SCOPUS:105004067429
SN - 0743-7463
VL - 41
SP - 11674
EP - 11689
JO - Langmuir
JF - Langmuir
IS - 18
ER -