Suivre
Nikita V Muravyev
Nikita V Muravyev
Semenov Institute of Chemical physics
Adresse e-mail validée de chemphys.space - Page d'accueil
Titre
Citée par
Citée par
Année
ICTAC Kinetics Committee recommendations for analysis of thermal decomposition kinetics
N Koga, S Vyazovkin, AK Burnham, L Favergeon, NV Muravyev, ...
Thermochimica Acta 719, 179384, 2023
1192023
Pyrazole–tetrazole hybrid with trinitromethyl, fluorodinitromethyl, or (difluoroamino) dinitromethyl groups: high‐performance energetic materials
IL Dalinger, AV Kormanov, KY Suponitsky, NV Muravyev, AB Sheremetev
Chemistry–An Asian Journal 13 (9), 1165-1172, 2018
1052018
Pursuing reliable thermal analysis techniques for energetic materials: decomposition kinetics and thermal stability of dihydroxylammonium 5, 5′-bistetrazole-1, 1′-diolate …
NV Muravyev, KA Monogarov, AF Asachenko, MS Nechaev, IV Ananyev, ...
Physical Chemistry Chemical Physics 19 (1), 436-449, 2017
1042017
Progress in additive manufacturing of energetic materials: Creating the reactive microstructures with high potential of applications
NV Muravyev, KA Monogarov, U Schaller, IV Fomenkov, AN Pivkina
Propellants, Explosives, Pyrotechnics 44 (8), 941-969, 2019
982019
Sensitivity of energetic materials: Evidence of thermodynamic factor on a large array of CHNOFCl compounds
NV Muravyev, DB Meerov, KA Monogarov, IN Melnikov, EK Kosareva, ...
Chemical Engineering Journal 421, 129804, 2021
912021
Assembly of tetrazolylfuroxan organic salts: multipurpose green energetic materials with high enthalpies of formation and excellent detonation performance
AA Larin, NV Muravyev, AN Pivkina, KY Suponitsky, IV Ananyev, ...
Chemistry–A European Journal 25 (16), 4225-4233, 2019
802019
Critical appraisal of kinetic calculation methods applied to overlapping multistep reactions
NV Muravyev, AN Pivkina, N Koga
Molecules 24 (12), 2298, 2019
782019
Kinetic analysis of overlapping multistep thermal decomposition comprising exothermic and endothermic processes: thermolysis of ammonium dinitramide
NV Muravyev, N Koga, DB Meerov, AN Pivkina
Physical Chemistry Chemical Physics 19 (4), 3254-3264, 2017
682017
Azasydnone–novel “green” building block for designing high energetic compounds
IL Dalinger, OV Serushkina, NV Muravyev, DB Meerov, ...
Journal of Materials Chemistry A 6 (38), 18669-18676, 2018
672018
Assembly of Nitrofurazan and Nitrofuroxan Frameworks for High‐Performance Energetic Materials
LL Fershtat, IV Ovchinnikov, MA Epishina, AA Romanova, DB Lempert, ...
ChemPlusChem, 2017
662017
Comparative study of HMX and CL-20: Thermal analysis, combustion and interaction with aluminium
O Ordzhonikidze, A Pivkina, Y Frolov, N Muravyev, K Monogarov
Journal of thermal analysis and calorimetry 105 (2), 529-534, 2011
612011
Progress and Performance of Energetic Materials: Open Dataset, Tool, and Implications for Synthesis
NV Muravyev, D Wozniak, D Piercey
Journal of Materials Chemistry A, 2022
512022
Influence of particle size and mixing technology on combustion of HMX/Al compositions
N Muravyev, Y Frolov, A Pivkina, K Monogarov, O Ordzhonikidze, ...
Propellants, Explosives, Pyrotechnics 35 (3), 226-232, 2010
492010
Pushing the energy-sensitivity balance with high-performance bifuroxans
AA Larin, AV Shaferov, MA Epishina, IN Melnikov, NV Muravyev, ...
ACS Applied Energy Materials 3 (8), 7764-7771, 2020
462020
HP-DSC study of energetic materials. Part I. Overview of pressure influence on thermal behavior
NV Muravyev, KA Monogarov, AA Bragin, IV Fomenkov, AN Pivkina
Thermochimica Acta 631, 1-7, 2016
462016
Learning to Fly: Thermochemistry of Energetic Materials by Modified Thermogravimetric Analysis and Highly Accurate Quantum Chemical Calculations
NV Muravyev, KA Monogarov, I Melnikov, AN Pivkina, VG Kiselev
Physical Chemistry Chemical Physics, 2021
432021
Prospects of Using Boron Powders As Fuel. II. Influence of Aluminum and Magnesium Additives and Their Compounds on the Thermal Behavior of Boron Oxide
AN Pivkina, DB Meerov, KA Monogarov, YV Frolov, NV Muravyev
Combustion, Explosion, and Shock Waves 56 (2), 148-155, 2020
43*2020
Artificial Neural Networks for Pyrolysis, Thermal Analysis, and Thermokinetic Studies: The Status Quo
NV Muravyev, G Luciano, HL Ornaghi, R Svoboda, S Vyazovkin
Molecules 26 (12), 3727, 2021
412021
Comment on “Studies on Thermodynamic Properties of FOX-7 and Its Five Closed-Loop Derivatives”
VGK Nikita V. Muravyev, Alla N. Pivkina
Journal of Chemical & Engineering Data 62 (1), 575-576, 2017
41*2017
Supercritical antisolvent processing of nitrocellulose: downscaling to nanosize, reducing friction sensitivity and introducing burning rate catalyst
OS Dobrynin, MN Zharkov, IV Kuchurov, IV Fomenkov, SG Zlotin, ...
Nanomaterials 9 (10), 1386, 2019
402019
Le système ne peut pas réaliser cette opération maintenant. Veuillez réessayer plus tard.
Articles 1–20