Morphology-dependent catalytic activity of Fe2O3 and its graphene-based nanocomposites on the thermal decomposition of AP

Author:

Zhang Ming,Zhao Fengqi,Li Hui,Yang Yanjing,An Ting,Jiang Yifan,Li Na

Funder

National Natural Science Foundation of China

Publisher

Elsevier BV

Reference27 articles.

1. Anti-migration and burning rate catalytic performances of novel ferrocene-based porphyrins and their transition-metal complexes;Gu;New J Chem,2018

2. Effects of magnesium-based hydrogen storage materials on the thermal decomposition, burning rate, and explosive heat of ammonium perchlorate-based composite solid propellant;Liu;J Hazard Mater,2018

3. A new design strategy for high-energy low-sensitivity explosives: combining oxygen balance equal to zero, a combination of nitro and amino groups, and N-oxide in one molecule of 1-amino-5-nitrotetrazole-3N-oxide;Wu;J Mater Chem A,2017

4. Study on the synthesis and performance of 3,3′-azobis (6-amino-1,2,4,5-tetrazine);Xu;Front Chem,2007

5. The effect of decorated graphene addition on the burning rate of ammonium perchlorate composite propellants;Isert;Combust Flame,2017

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