Research progress of EMOFs-based burning rate catalysts for solid propellants

Energetic Metal Organic Frameworks (EMOFs) have been a hotspot of research on solid propellants in recent years. In this paper, research on the application of EMOFs-based burning rate catalysts in solid propellants was reviewed and the development trend of these catalysts was explored. The catalysts...

Full description

Bibliographic Details
Main Authors: Bojun Tan, Xiong Yang, Jinkang Dou, Binghui Duan, Xianming Lu, Ning Liu
Format: Article
Language:English
Published: Frontiers Media S.A. 2022-10-01
Series:Frontiers in Chemistry
Subjects:
Online Access:https://www.frontiersin.org/articles/10.3389/fchem.2022.1032163/full
_version_ 1798021850312212480
author Bojun Tan
Xiong Yang
Jinkang Dou
Binghui Duan
Xianming Lu
Ning Liu
author_facet Bojun Tan
Xiong Yang
Jinkang Dou
Binghui Duan
Xianming Lu
Ning Liu
author_sort Bojun Tan
collection DOAJ
description Energetic Metal Organic Frameworks (EMOFs) have been a hotspot of research on solid propellants in recent years. In this paper, research on the application of EMOFs-based burning rate catalysts in solid propellants was reviewed and the development trend of these catalysts was explored. The catalysts analyzed included monometallic organic frameworks-based energetic burning rate catalysts, bimetallic multifunctional energetic burning rate catalysts, carbon-supported EMOFs burning rate catalysts, and catalysts that can be used in conjunction with EMOFs. The review suggest that monometallic organic frameworks-based burning rate catalysts have relatively simple catalytic effects, and adding metal salts can improve their catalytic effect. Bimetallic multifunctional energetic burning rate catalysts have excellent catalytic performance and the potential for broad application. The investigation of carbon-supported EMOFs burning rate catalysts is still at a preliminary stage, but their preparation and application have become a research focus in the burning rate catalyst field. The application of catalysts that can be compounded with EMOFs should be promoted. Finally, environmental protection, high energy and low sensitivity, nanometerization, multifunctional compounding and solvent-free are proposed as key directions of future research. This study aims to provide a reference for the application of energetic organic burning rate catalysts in solid propellants.
first_indexed 2024-04-11T17:20:07Z
format Article
id doaj.art-5fdac2cea86c4482a0b3f317efc9d04a
institution Directory Open Access Journal
issn 2296-2646
language English
last_indexed 2024-04-11T17:20:07Z
publishDate 2022-10-01
publisher Frontiers Media S.A.
record_format Article
series Frontiers in Chemistry
spelling doaj.art-5fdac2cea86c4482a0b3f317efc9d04a2022-12-22T04:12:30ZengFrontiers Media S.A.Frontiers in Chemistry2296-26462022-10-011010.3389/fchem.2022.10321631032163Research progress of EMOFs-based burning rate catalysts for solid propellantsBojun TanXiong YangJinkang DouBinghui DuanXianming LuNing LiuEnergetic Metal Organic Frameworks (EMOFs) have been a hotspot of research on solid propellants in recent years. In this paper, research on the application of EMOFs-based burning rate catalysts in solid propellants was reviewed and the development trend of these catalysts was explored. The catalysts analyzed included monometallic organic frameworks-based energetic burning rate catalysts, bimetallic multifunctional energetic burning rate catalysts, carbon-supported EMOFs burning rate catalysts, and catalysts that can be used in conjunction with EMOFs. The review suggest that monometallic organic frameworks-based burning rate catalysts have relatively simple catalytic effects, and adding metal salts can improve their catalytic effect. Bimetallic multifunctional energetic burning rate catalysts have excellent catalytic performance and the potential for broad application. The investigation of carbon-supported EMOFs burning rate catalysts is still at a preliminary stage, but their preparation and application have become a research focus in the burning rate catalyst field. The application of catalysts that can be compounded with EMOFs should be promoted. Finally, environmental protection, high energy and low sensitivity, nanometerization, multifunctional compounding and solvent-free are proposed as key directions of future research. This study aims to provide a reference for the application of energetic organic burning rate catalysts in solid propellants.https://www.frontiersin.org/articles/10.3389/fchem.2022.1032163/fullsolid propellantenergetic metal organic frameworks (EMOFs)energetic burning rate catalystsenvironmental protectionhigh energy and low sensitivitynanometerization
spellingShingle Bojun Tan
Xiong Yang
Jinkang Dou
Binghui Duan
Xianming Lu
Ning Liu
Research progress of EMOFs-based burning rate catalysts for solid propellants
Frontiers in Chemistry
solid propellant
energetic metal organic frameworks (EMOFs)
energetic burning rate catalysts
environmental protection
high energy and low sensitivity
nanometerization
title Research progress of EMOFs-based burning rate catalysts for solid propellants
title_full Research progress of EMOFs-based burning rate catalysts for solid propellants
title_fullStr Research progress of EMOFs-based burning rate catalysts for solid propellants
title_full_unstemmed Research progress of EMOFs-based burning rate catalysts for solid propellants
title_short Research progress of EMOFs-based burning rate catalysts for solid propellants
title_sort research progress of emofs based burning rate catalysts for solid propellants
topic solid propellant
energetic metal organic frameworks (EMOFs)
energetic burning rate catalysts
environmental protection
high energy and low sensitivity
nanometerization
url https://www.frontiersin.org/articles/10.3389/fchem.2022.1032163/full
work_keys_str_mv AT bojuntan researchprogressofemofsbasedburningratecatalystsforsolidpropellants
AT xiongyang researchprogressofemofsbasedburningratecatalystsforsolidpropellants
AT jinkangdou researchprogressofemofsbasedburningratecatalystsforsolidpropellants
AT binghuiduan researchprogressofemofsbasedburningratecatalystsforsolidpropellants
AT xianminglu researchprogressofemofsbasedburningratecatalystsforsolidpropellants
AT ningliu researchprogressofemofsbasedburningratecatalystsforsolidpropellants