TY - JOUR
T1 - Preparation and characterization of Fe 2O 3/ammonium perchlorate (AP) nanocomposites through ceramic membrane anti-solvent crystallization
AU - Ma, Zhenye
AU - Wu, Rujun
AU - Song, Jun
AU - Li, Cheng
AU - Chen, Rizhi
AU - Zhang, Lixiong
PY - 2012/4
Y1 - 2012/4
N2 - A novel ceramic membrane anti-solvent crystallization (CMASC) method was proposed to prepare Fe 2O 3/AP nanocomposites with core-shell structure. For the preparation of Fe 2O 3/AP nanocomposites, several key advantages of the CMASC method are as follows. Firstly, both well-dispersed Fe 2O 3 nanoparticles and the superfine AP preparation can be achieved at one step. Secondly, no non-component of solid propellant was involved in this composite process. Thirdly, the size and morphology of Fe 2O 3/AP nanocomposites can be effectively controlled by using the ceramic membrane with regular pore structure as feeding template. The morphology and structure of Fe 2O 3/AP nanocomposites were characterized by inductively coupled plasma spectrophotometry (ICP), IR spectroscopy, SEM, and HRTEM. The results verified that the size and morphology of Fe 2O 3/AP nanocomposites are controllable, and the dispersion of Fe 2O 3 nanoparticles is greatly improved in Fe 2O 3/AP nanocomposites. Moreover, the thermal decomposition of the as-prepared Fe 2O 3/AP nanocomposites was measured with TG-DSC. The results showed that the Fe 2O 3 nanoparticles in Fe 2O 3/AP nanocomposites exhibit better catalytic activity on the thermal decomposition of AP. In addition, the mechanism was also discussed.
AB - A novel ceramic membrane anti-solvent crystallization (CMASC) method was proposed to prepare Fe 2O 3/AP nanocomposites with core-shell structure. For the preparation of Fe 2O 3/AP nanocomposites, several key advantages of the CMASC method are as follows. Firstly, both well-dispersed Fe 2O 3 nanoparticles and the superfine AP preparation can be achieved at one step. Secondly, no non-component of solid propellant was involved in this composite process. Thirdly, the size and morphology of Fe 2O 3/AP nanocomposites can be effectively controlled by using the ceramic membrane with regular pore structure as feeding template. The morphology and structure of Fe 2O 3/AP nanocomposites were characterized by inductively coupled plasma spectrophotometry (ICP), IR spectroscopy, SEM, and HRTEM. The results verified that the size and morphology of Fe 2O 3/AP nanocomposites are controllable, and the dispersion of Fe 2O 3 nanoparticles is greatly improved in Fe 2O 3/AP nanocomposites. Moreover, the thermal decomposition of the as-prepared Fe 2O 3/AP nanocomposites was measured with TG-DSC. The results showed that the Fe 2O 3 nanoparticles in Fe 2O 3/AP nanocomposites exhibit better catalytic activity on the thermal decomposition of AP. In addition, the mechanism was also discussed.
KW - Ammonium perchlorate (AP)
KW - Ceramic membrane anti-solvent (CMAS)
KW - Crystal growth
KW - Crystallization
UR - http://www.scopus.com/inward/record.url?scp=84859978771&partnerID=8YFLogxK
U2 - 10.1002/prep.201000132
DO - 10.1002/prep.201000132
M3 - 文章
AN - SCOPUS:84859978771
SN - 0721-3115
VL - 37
SP - 183
EP - 190
JO - Propellants, Explosives, Pyrotechnics
JF - Propellants, Explosives, Pyrotechnics
IS - 2
ER -