2023Advanced Engineering MaterialsOpen access

A Metal Inorganic Framework Designed as a Propellant Burn Rate Modifier

Neil Vaz, Joseph D. Pantoya, Kelsea K. Miller, Armando de Rezende, Adélia J. A. Aquino, Andrew R. Demko, Michelle L. Pantoya

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Abstract

In article number 2301099, Michelle L. Pantoya and co-workers introduce a metal inorganic framework composed of an aluminum cation and an inorganic linker designed to control mass decomposition rate and exothermicity of ammonium perchlorate, a solid propellant.

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In article number 2301099, Michelle L. Pantoya and co-workers introduce a metal inorganic framework composed of an aluminum cation and an inorganic linker designed to control mass decomposition rate and exothermicity of ammonium perchlorate, a solid propellant.

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Available abstract

In article number 2301099, Michelle L. Pantoya and co-workers introduce a metal inorganic framework composed of an aluminum cation and an inorganic linker designed to control mass decomposition rate and exothermicity of ammonium perchlorate, a solid propellant.

Key concepts: Ammonium perchlorate, Propellant, Burn rate (chemistry), Materials science, Energetic material, Metal, Decomposition, Aluminium

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