2937 - 2950 |
Optimal design of sustainable hydrogen networks Zhou L, Liao ZW, Wang JD, Jiang BB, Yang YR, Hui D |
2951 - 2956 |
Assessment of four different cathode materials at different initial pHs using unbuffered catholytes in microbial electrolysis cells Ribot-Llobet E, Nam JY, Tokash JC, Guisasola A, Logan BE |
2957 - 2964 |
Transient operation of a solid oxide electrolysis cell Petipas F, Fu QX, Brisse A, Bouallou C |
2965 - 2972 |
NH3/Ir(100): Electronic structure and dehydrogenation Zhang YM, Xiao XZ, Cao YL, Cai YY, Wang JJ |
2973 - 2978 |
Excellent hydrolysis performances of Mg3RE hydrides Ouyang LZ, Huang JM, Wang H, Wen YJ, Zhang QA, Sun DL, Zhu M |
2979 - 2985 |
Optimization of surface charge transfer processes on rutile TiO2 nanorods photoanodes for water splitting Fabrega C, Andreu T, Tarancon A, Flox C, Morata A, Calvo-Barrio L, Morante JR |
2986 - 2997 |
Pentoses, hexoses and glycerin as substrates for biohydrogen production: An approach for Brazilian biofuel integration de Sa LRV, Cammarota MC, de Oliveira TC, Oliveira EMM, Matos A, Ferreira-Leitao VS |
2998 - 3002 |
Arginine(171) of Chlamydomonas reinhardtii [Fe-Fe] hydrogenase HydA1 plays a crucial role in electron transfer to its catalytic center Sybirna K, Ezanno P, Baffert C, Leger C, Bottin H |
3003 - 3011 |
Low temperature hydrogen production by catalytic steam reforming of methane in an electric field Oshima K, Shinagawa T, Haraguchi M, Sekine Y |
3012 - 3018 |
Dry reforming of methane to synthesis gas on NiO-MgO nanocrystalline solid solution catalysts Zanganeh R, Rezaei M, Zamaniyan A |
3019 - 3023 |
Controlled degradation of highly compacted sodium alanate pellets Sulic M, Cai M, Kumar S |
3024 - 3029 |
Effect of partial niobium and iron substitution on short-term cycle durability of hydrogen storage Ti-Cr-V alloys Towata S, Noritake T, Itoh A, Aoki M, Miwa K |
3030 - 3040 |
Electrochemical hydriding of Mg-Ni-Mm (Mm = mischmetal) alloys as an effective method for hydrogen storage Knotek V, Vojtech D |
3041 - 3049 |
Small Pd cluster adsorbed double vacancy defect graphene sheet for hydrogen storage: A first-principles study Sen D, Thapa R, Chattopadhyay KK |
3050 - 3063 |
Policy schemes, operational strategies and system integration of residential co-generation fuel cells Pade LL, Schroder ST, Munster M, Birkl C, Ropenus S, Morthorst PE, Obe E, Kotter E, Huber A, Costa A, Kroff P |
3064 - 3072 |
La2-xSrxCoO4-delta (x=0.9, 1.0, 1.1) Ruddlesden-Popper-type layered cobaltites as cathode materials for IT-SOFC application Hu Y, Bouffanais Y, Almar L, Morata A, Tarancon A, Dezanneau G |
3073 - 3086 |
Diopside-Ba disilicate glass-ceramic sealants for SOFCs: Enhanced adhesion and thermal stability by Sr for Ca substitution Reddy AA, Tulyaganov DU, Pascual MJ, Kharton VV, Tsipis EV, Kolotygin VA, Ferreira JMF |
3087 - 3091 |
Hydrogen permeation in asymmetric La28-xW4+xO54+3x/2 membranes Gil V, Gurauskis J, Kjolseth C, Wiik K, Einarsrud MA |
3092 - 3104 |
Development of CMS/Al2O3-supported PPO composite membrane for hydrogen separation Weng TH, Tseng HH, Zhuang GL, Wey MY |
3105 - 3109 |
Critical radius for hot-jet ignition of hydrogen-air mixtures Carpio J, Iglesias I, Vera M, Sanchez AL, Linan A |