Amsterdam density functional .21 files

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Lan G, Li J, Zhang G, Ruan J, Lu Z, Jin S, Cao D, Wang J (2021) Thermal decomposition mechanism study of 3-nitro-1,2,4-triazol-5-one (NTO): combined TG-FTIR-MS techniques and ReaxFF reactive molecular dynamics simulations. Beijing Institute of Technology Press, Beijing Propell Explos Pyrot 43:144–150ĭamse RS, Singh A, Singh H (2007) High energy propellants for advanced gun ammunition based on RDX, GAP and TAGN compositions.

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Liu J, Ke X, Xiao L, Hao G, Rong Y, Jin C, Jiang W, Li F (2018) Application and properties of nano-sized RDX in CMDB propellant with low solid content. Thermochim Acta 549:102–109Įlbasuney S, Fahd A, Mostafa HE (2017) Combustion characteristics of extruded double base propellant based on ammonium perchlorate/aluminum binary mixture. Chem Eng J 429:132175ĭubey R, Srivastava P, Kapoor IPS, Singh G (2012) Synthesis, characterization and catalytic behavior of Cu nanoparticles on the thermal decomposition of AP, HMX, NTO and composite solid propellants. Zhang M, Zhao F, Li H, Yuan Z, Dong S, Wang Y, Chen X, Yang Y, Song X, Jiang Z (2022) Insight into graphene-salen metal nanocomposites on combustion performance and mechanism of HMX-CMDB propellant.

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Propell Explos Pyrot 45:1799–1804Ĭhaturvedi S, Dave PN (2019) Solid propellants: AP/HTPB composite propellants. Song N, Liu J, Yang L, Liu P (2020) Preparation of nano-spherical Cu-en and its catalytic study on the performance of solid propellant.

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