Encapsulation of Ferrocenes in Microporous Zif-67 Channels for Boosting Their Anti-Migration Tendency and Catalytic Activity in Ammonium Perchlorate Thermal Decomposition

Author:

Mi Zhiyuan,Lu Caihong,Wang Jiao,Liu Hailong,Guo Huimin,Fu Xiaolong,Zhang Guofang

Publisher

Elsevier BV

Reference59 articles.

1. Multi-stage combustion characteristics of sodium perchlorate/lithium perchlorate-based electrically controlled solid propellant;Z W Wang;Chem. Eng. J,2023

2. Effect of Fe-based organic metal framework on the thermal decomposition of potassium nitrate and its application to the composite solid propellants;C Y Wu;Combust. Flame,2021

3. Heterobimetallic Catalysts for the Thermal Decomposition of Ammonium Perchlorate: Efficient Burning Rate Catalysts for Solid Rocket Motors and Missiles;J L Arroyo;Inorg. Chem,2021

4. Mechanistic Insights into the Thermal Decomposition of Ammonium Perchlorate: The Role of Amino-Functionalized Magnetic Nanoparticles;J Gaete;Inorg. Chem,2022

5. Synthesis of ferrocenylated-aminopyridines and ferrocenylated-aminothiazoles and their anti-migration and burning rate catalytic properties;M Usman;J Organomet Chem,2020

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