화학공학소재연구정보센터
검색결과 : 1,085건
No. Article
1 Design of an active and stable catalyst for dry reforming of methane via molecular layer deposition
Ingale P, Guan CY, Kraehnert R, d'Alnoncourt RN, Thomas A, Rosowski F
Catalysis Today, 362, 47, 2021
2 Dry reforming of methane over Ni supported on LaMnO3 thin films
Kwon O, Huang RJ, Cao TY, Vohs JM, Gorte RJ
Catalysis Today, 382, 142, 2021
3 Activation energy of hydrogen desorption from high-performance titanium oxide carrier-selective contacts with silicon oxide interlayers
Gotoh K, Mochizuki T, Hojo T, Shibayama Y, Kurokawa Y, Akiyama E, Usami N
Current Applied Physics, 21, 36, 2021
4 Identification of highly active surface iron sites on Ni(OOH) for the oxygen evolution reaction by atomic layer deposition
Baker JG, Schneider JR, de Paula C, Mackus AJM, Bent SF
Journal of Catalysis, 394, 476, 2021
5 A Systematic Study of the Interactions in the Top Electrode/Capping Layer/Thin Film Encapsulation of Transparent OLEDs
Kwon BH, Lee HK, Kim MH, Joo CW, Cho HS, Lim JT, Jung YS
Journal of Industrial and Engineering Chemistry, 93, 237, 2021
6 Advanced Side-Impermeability Characteristics of Fluorinated Organic-Inorganic Nanohybrid Materials for Thin Film Encapsulation
Kwon HJ, Hong JS, Le HN, Jung CM, Park CE, Moon HC, Kim JY, Kim SH
Macromolecular Research, 29(4), 313, 2021
7 Leaf-derived porous carbon synthesized by carbothermic reduction
Nguyen UNT, Lam DV, Shim HC, Lee SM
Renewable Energy, 171, 116, 2021
8 Photocatalytic CO2 reduction on porous TiO2 synergistically promoted by atomic layer deposited MgO overcoating and photodeposited silver nanoparticles
Feng XH, Pan FP, Tran BZ, Li Y
Catalysis Today, 339, 328, 2020
9 Ni-alumina dry reforming catalysts: Atomic layer deposition and the issue of Ni aluminate
Littlewood P, Liu SS, Weitz E, Marks TJ, Stair PC
Catalysis Today, 343, 18, 2020
10 Controlling the rate of change of Ni dispersion in commercial catalyst by ALD overcoat during dry reforming of methane
Afzal S, Prakash AV, Littlewood P, Marks TJ, Weitz E, Stair PC, Elbashir NO
International Journal of Hydrogen Energy, 45(23), 12835, 2020