화학공학소재연구정보센터
검색결과 : 18건
No. Article
1 Solvent-exchange process in MOF ultrathin films and its effect on CO2 and methanol adsorption
Andres MA, Fontaine P, Goldmann M, Serre C, Roubeau O, Gascon I
Journal of Colloid and Interface Science, 590, 72, 2021
2 Atomistic insight into the microexplosion-accelerated oxidation process of molten aluminum nanoparticles
Li G, Niu LL, Hao WZ, Liu Y, Zhang CY
Combustion and Flame, 214, 238, 2020
3 Effect of Heating Rate on Ignition Characteristics of Newly Prepared and Aged Aluminum Nanoparticles
Jin X, Li SJ, Yang YH, Yang YJ, Huang XF
Propellants Explosives Pyrotechnics, 45(9), 1428, 2020
4 Effect of Heating Rate on Ignition Characteristics of Newly Prepared and Aged Aluminum Nanoparticles
Jin X, Li SJ, Yang YH, Yang YJ, Huang XF
Propellants Explosives Pyrotechnics, 45(9), 1428, 2020
5 Kinetic Monte Carlo simulation for homogeneous nucleation of metal nanoparticles during vapor phase synthesis
Davari SA, Mukherjee D
AIChE Journal, 64(1), 18, 2018
6 Fabrication of ultrathin MIL-96(Al) films and study of CO2 adsorption/desorption processes using quartz crystal microbalance
Andres MA, Benzaqui M, Serre C, Steunou N, Gascon I
Journal of Colloid and Interface Science, 519, 88, 2018
7 Preparation of aluminum hydroxide and oxide nanostructures with controllable morphology by wet oxidation of AlN/A1 nanoparticles
Kazantsev SO, Lozhkomoev AS, Glazkova EA, Gotman I, Gutmanas EY, Lerner MI, Psakhie SG
Materials Research Bulletin, 104, 97, 2018
8 A multi-phase micro-kinetic model for simulating aluminum based thermite reactions
Baijot V, Mehdi DR, Rossi C, Esteve A
Combustion and Flame, 180, 10, 2017
9 Insights into combustion mechanisms of variable aluminum-based iron oxide/-hydroxide nanothermites
Hubner J, Klaumunzer M, Comet M, Martin C, Vidal L, Schafer M, Kryschi C, Spitzer D
Combustion and Flame, 184, 186, 2017
10 Experimental study of combustion of composite fuel comprising n-decane and aluminum nanoparticles
Smirnov VV, Kostritsa SA, Kobtsev VD, Titova NS, Starik AM
Combustion and Flame, 162(10), 3554, 2015