화학공학소재연구정보센터
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No. Article
11 Experimental methods in chemical engineering: Transmission electron microscopy-TEM
Braidy N, Bechu A, Terra JCD, Patience GS
Canadian Journal of Chemical Engineering, 98(3), 2020
12 Structural Features of Particles of Goudron CO(2)Asphaltenes Precipitated with Various Organic Diluents
Magomedov RN, Pripakhailo AV, Panyukova DI, Foteeva LS, Maryutina TA
Chemistry and Technology of Fuels and Oils, 56(3), 325, 2020
13 Quantifying soot nanostructures: Importance of image processing parameters for lattice fringe analysis
Pfau SA, La Rocca A, Fay MW
Combustion and Flame, 211, 430, 2020
14 Gold nanoparticles as a catalyst for dehydrogenation reaction of dimethylamine borane at room temperature
Al-mahamad LLG
International Journal of Hydrogen Energy, 45(21), 11916, 2020
15 Changes in cellular structure of heat-treated Salmonella in low-moisture environments
Xu J, Shah DH, Song J, Tang J
Journal of Applied Microbiology, 129(2), 434, 2020
16 Unveiling the gas-dependent sintering behavior of Au-TiO2 catalysts via environmental transmission electron microscopy
Li GX, Fang K, Chen YZ, Ou Y, Mao SJ, Yuan WT, Wang Y, Yang HS, Zhang Z, Wang Y
Journal of Catalysis, 388, 84, 2020
17 Effect of cobalt addition on platinum supported on multi-walled carbon nanotubes for water-gas shift
Mitchell GM, Sabnis KD, Sollberger FG, Cui YR, Han CW, Majumdar P, Zeng ZH, Miller JT, Greeley J, Ortalan V, Wang C, Delgass WN, Ribeiro FH
Journal of Catalysis, 391, 25, 2020
18 PtNi bimetallic structure supported on UiO-67 metal-organic framework (MOF) during CO oxidation
Vakili R, Slater TJA, Hardacre C, Walton AS, Fan XL
Journal of Catalysis, 391, 522, 2020
19 Unexpected conformational behavior of poly(poly(ethylene glycol) methacrylate)-poly(propylene carbonate)-poly(poly(ethylene glycol) methacrylate) (PPEGMA-PPC-PPEGMA) amphiphilic block copolymers in micellar solution and at the air-water interface
Lee J, Pan JY, Chun J, Won YY
Journal of Colloid and Interface Science, 566, 304, 2020
20 Pursuit of optimal synthetic conditions for obtaining colloidal zero-valent iron nanoparticles by scanning pulsed laser ablation in liquids
Lahoz R, Natividad E, Mayoral A, Rentenberger C, Diaz-Fernandez D, Felix EJ, Soriano L, Kautek W, Bomati-Miguel O
Journal of Industrial and Engineering Chemistry, 81, 340, 2020