14 - 24 |
Institutionalized knowledge conflict in assessing the possible contributions of H-2 to a sustainable energy system for the Netherlands Hisschemoller M, Bode R |
25 - 43 |
Fuel cell vehicles: State of the art with economic and environmental concerns Veziroglu A, Macario R |
44 - 51 |
Performance of a sulfur-resistant commercial WGS catalyst employing industrial coal-derived syngas feed de la Osa AR, De Lucas A, Valverde JL, Romero A, Monteagudo I, Sanchez P |
52 - 63 |
Electrochemical fabrication of novel Pt/poly (m-toluidine)/Triton X-100 composite catalyst at the surface of carbon nanotube paste electrode and its application for methanol oxidation Raoof JB, Ojani R, Hosseini SR |
64 - 71 |
Selective oxidation of CO in rich hydrogen stream over Ag/OMS-2 catalyst Hu RR, Yan CF, Xie LY, Cheng Y, Wang DZ |
72 - 78 |
Oxygen evolution reaction on Ni-substituted Co3O4 nanowire array electrodes Lu BA, Cao DX, Wang P, Wang GL, Gao YY |
79 - 86 |
Effect of Ce on the structural features and catalytic properties of La(0.9-x)CexFeO3 perovskite-like catalysts for the high temperature water-gas shift reaction Sun Y, Hla SS, Duffy GJ, Cousins AJ, French D, Morpeth LD, Edwards JH, Roberts DG |
87 - 93 |
Nitrogen-doped ordered mesoporous carbons as electrocatalysts for methanol-tolerant oxygen reduction in acid solution Liu SH, Wu JR |
94 - 102 |
The effect of Ni content on a highly active Ni-Al2O3 catalyst prepared by the homogeneous precipitation method Seo YS, Jung YS, Yoon WL, Jang IG, Lee TW |
103 - 110 |
Microwave assisted synthesis of ruthenium electrocatalysts for oxygen reduction reaction in the presence and absence of aqueous methanol Borja-Arco E, Sandoval OJ, Escalante-Garcia J, Sandoval-Gonzalez A, Sebastian PJ |
111 - 119 |
Corrosion behaviour of construction materials for high temperature steam electrolysers Nikiforov AV, Petrushina IM, Christensen E, Tomas-Garcia AL, Bjerrum NJ |
120 - 134 |
Electrolysers for mitigating wind curtailment and producing'green' merchant hydrogen Troncoso E, Newborough M |
135 - 151 |
Electrochemical performance of Ni-RE (RE = rare earth) as electrode material for hydrogen evolution reaction in alkaline medium Dominguez-Crespo MA, Torres-Huerta AM, Brachetti-Sibaja B, Flores-Vela A |
152 - 159 |
A solid oxide membrane electrolyzer for production of hydrogen and syn-gas from steam and hydrocarbon waste in a single step Pati S, Gopalan S, Pal UB |
160 - 166 |
Evaluation of stainless steel cathodes and a bicarbonate buffer for hydrogen production in microbial electrolysis cells using a new method for measuring gas production Ambler JR, Logan BE |
167 - 174 |
Highly stable CdS-modified short TiO2 nanotube array electrode for efficient visible-light hydrogen generation Liu YB, Zhou HB, Zhou BX, Li JH, Chen HC, Wang JJ, Bai J, Shangguan WF, Cai WM |
175 - 188 |
Transient phenomenological modeling of photoelectrochemical cells for water splitting - Application to undoped hematite electrodes Andrade L, Lopes T, Ribeiro HA, Mendes A |
189 - 202 |
One-dimensional model of solar thermal reactors for the co-production of hydrogen and carbon black from methane decomposition Patrianakos G, Kostoglou M, Konstandopoulos A |
203 - 215 |
Kinetics of methane reforming over Ru/gamma-Al2O3-catalyzed metallic foam at 650-900 degrees C for solar receiver-absorbers Gokon N, Yamawaki Y, Nakazawa D, Kodama T |
216 - 223 |
Decomposition of hydrogen iodide via wood-based activated carbon catalysts for hydrogen production Wang ZH, Chen Y, Zhou C, Whiddon R, Zhang YW, Zhou JH, Cen KF |
224 - 233 |
Spontaneous hydrolysis of sodium borohydride in harsh conditions Andrieux J, Demirci UB, Hannauer J, Gervais C, Goutaudier C, Miele P |
234 - 239 |
Chemical hydrogen storage using polynuclear borane anion salts Safronov AV, Jalisatgi SS, Lee HB, Hawthorne MF |
240 - 246 |
Devices for producing hydrogen via NaBH4 and LiH hydrolysis Gislon P, Prosini PP |
247 - 253 |
Effect of the presence of chlorides on the synthesis and decomposition of Ca(BH4)(2) Rongeat C, Lindemann I, Borgschulte A, Schultz L, Gutfleisch O |
254 - 261 |
Hydrogen generation from the hydrolysis of ammonia borane using cobalt-nickel-phosphorus (Co-Ni-P) catalyst supported on Pd-activated TiO2 by electroless deposition Rakap M, Kalu EE, Ozkar S |
262 - 266 |
Bioreactor for glycerol conversion into H-2 by bacterium Enterobacter aerogenes Markov SA, Averitt J, Waldron B |
267 - 275 |
Hydrogen production from glycerol steam reforming for low- and high-temperature PEMFCs Authayanun S, Arpornwichanop A, Patcharauorachot Y, Wiyaratn W, Assabumrungrat S |
276 - 283 |
Thermal integration of a cylindrically symmetric methanol fuel processor for portable fuel cell power Besser RS |
284 - 298 |
Enhancement of simultaneous hydrogen production and methanol synthesis in thermally coupled double-membrane reactor Rahimpour MR, Rahmani F, Bayat M, Pourazadi E |
299 - 310 |
Optimal conditions for hydrogen production from coupling of dimethyl ether and benzene synthesis Farsi M, Khademi MH, Jahanmiri A, Rahimpour MR |
311 - 318 |
Effect of higher alcohols on the performances of a 1%Rh/MgAl2O4/Al2O3 catalyst for hydrogen production by crude bioethanol steam reforming Le Valant A, Garron A, Bion N, Duprez D, Epron F |
319 - 325 |
Study on a compact methanol reformer for a miniature fuel cell Pan LW, Ni CJ, Zhang XB, Yuan ZS, Zhang CX, Wang SD |
326 - 332 |
Ethanol steam reforming over Ni/NixMg1-xO: Inhibition of surface nickel species diffusion into the bulk Li MSA, Li SR, Zhang CX, Wang SP, Ma XB, Gong JL |
333 - 344 |
Modeling and simulation of microwave double absorption on methanol steam reforming for hydrogen production Chen WH, Cheng TC, Hung CI |
345 - 354 |
Microwave plasma torches driven by surface wave applied for hydrogen production Henriques J, Bundaleska N, Tataroua E, Dias FM, Ferreira CM |
355 - 363 |
Mechanism of wet sewage sludge pyrolysis in a tubular furnace Zhang BP, Xiong SJ, Xiao B, Yu DK, Jia XY |
364 - 373 |
Phase holdups and microbial community in high-rate fermentative hydrogen bioreactors Chu CY, Wu SY, Wu YC, Sen B, Hung CH, Cheng CH, Lin CY |
374 - 381 |
A two phase model of high temperature steam-only gasification of biomass char in bubbling fluidized bed reactors using nuclear heat Gordillo ED, Belghit A |
382 - 389 |
Effects of pretreatment methods on solubilization of beet-pulp and bio-hydrogen production yield Ozkan L, Erguder TH, Demirer GN |
390 - 396 |
Effects of various pretreatment methods of anaerobic mixed microflora on biohydrogen production and the fermentation pathway of glucose Wang YY, Ai P, Hu CX, Zhang YL |
397 - 404 |
Biogas upgrade to syn-gas (H-2-CO) via dry and oxidative reforming Lau CS, Tsolakis A, Wyszynski ML |
405 - 410 |
Enzymatic characterization of acid tolerance response (ATR) during the enhanced biohydrogen production process from Taihu cyanobacteria via anaerobic digestion Yan Q, Wang AJ, Yu CF, Ren NQ, Zhang YB, Zhang GS |
411 - 420 |
Development of a method for biohydrogen production from wheat straw by dark fermentation Nasirian N, Almassi M, Minaei S, Widmann R |
421 - 431 |
Interaction between a bimetallic Ni-Co catalyst and micrometer-sized CaO for enhanced H-2 production during cellulose decomposition Zhao M, Yang XS, Church TL, Harris AT |
432 - 438 |
Hydrogen productivity of photosynthetic bacteria on dark fermenter effluent of potato steam peels hydrolysate Afsar N, Ozgur E, Gurgan M, Akkose S, Yucel M, Gunduz U, Eroglu I |
439 - 449 |
The effect of pH on the production of biohydrogen by clostridia: Thermodynamic and metabolic considerations Liu IC, Whang LM, Ren WJ, Lin PY |
450 - 457 |
Hydrogen production by mixed bacteria through dark and photo fermentation Cheng J, Su HB, Zhou JH, Song WL, Cen KF |
458 - 465 |
Anaerobic H-2 production at elevated temperature (60 degrees C) by enriched mixed consortia from mesophilic sources Karadag D |
466 - 472 |
Hydrogen production by sorption enhanced steam reforming of propane: A thermodynamic investigation Wang XD, Wang N, Wang LA |
473 - 481 |
Novel micro-channel methane reformer assisted combustion reaction for hydrogen production Hwang KR, Lee CB, Lee SGW, Ryi SK, Park JS |
482 - 489 |
Catalytic performance of Ni catalysts for steam reforming of methane at high space velocity Zhai XL, Ding S, Liu ZH, Jin Y, Cheng Y |
490 - 504 |
Steam reforming of methane in a tapered membrane - Assisted fluidized -Bed reactor: Modeling and simulation Dehkordi AM, Savari C, Ghasemi M |
505 - 517 |
A comparative study on a novel combination of spherical and membrane tubular reactors of the catalytic naphtha reforming process Rahimpour MR, Iranshahi D, Pourazadi E, Bahmanpour AM |
518 - 527 |
Kinetics of the water-gas shift reaction over a La0.7Ce0.2FeO3 perovskite-like catalyst using simulated coal-derived syngas at high temperature Hla SS, Sun Y, Duffy GJ, Morpeth LD, Ilyushechkin A, Cousins A, Roberts DG, Edwards JH |
528 - 538 |
Hydrogen production by catalytic partial oxidation of coke oven gas in BaCo0.7Fe0.2Nb0.1O3-delta membranes with surface modification Cheng HW, Lu XG, Hu DH, Zhang YW, Ding WZ, Zhao HL |
539 - 548 |
Synthesis and hydriding/dehydriding properties of nanosized sodium alanates prepared by reactive ball-milling Xiao XZ, Yu KR, Fan XL, Wu Z, Wang XH, Chen CP, Wang QD, Chen LX |
549 - 554 |
Hydrogen storage properties of MgH2 mechanically milled with alpha and beta SiC Kurko S, Raskovic Z, Novakovic N, Mamula BP, Jovanovic Z, Bascarevic Z, Nouakovic JG, Matovic L |
555 - 562 |
Hydrogen binding in alkali-decorated iso-reticular metal organic framework-16 based on Zn, Mg, and Ca Srepusharawoot P, Blomqvist A, Araujo CM, Scheicher RH, Ahuja R |
563 - 570 |
Reversible hydrogen storage from 6LiBH(4) MCl3 (M = Ce, Gd) composites by in-situ formation of MH2 Gennari FC, Albanesi LF, Puszkiel JA, Larochette PA |
571 - 579 |
Hydrogen storage properties of Mg-10 wt% Ni alloy co-catalysed with niobium and multi-walled carbon nanotubes Aminorroaya S, Ranjbar A, Cho YH, Liu HK, Dahle AK |
580 - 585 |
Hydrogen storage ability of porous carbon material fabricated from coffee bean wastes Akasaka H, Takahata T, Toda I, Ono H, Ohshio S, Himeno S, Kokubu T, Saitoh H |
586 - 591 |
Hydrogen physisorption in high SSA microporous materials - A comparison between AX-21_33 and MOF-177 at cryogenic conditions Schlichtenmayer M, Streppel B, Hirscher M |
592 - 599 |
Effect of processing parameter on hydrogen storage characteristics of as quenched Ti45Zr38Ni17 quasicrystalline alloys Shahi RR, Yadav TP, Shaz MA, Srivastava ON, van Smaalen S |
600 - 605 |
Complex quaternary hydrides Mg-2(Fe,Co)H-y for hydrogen storage Mendoza-Zelis L, Meyer M, Baum L |
606 - 615 |
Hydrogen storage capacity of Ti substitution-doped pyracylene: Density functional theory investigations Zhang S, Meng XZ, Yu LL, Dong Q, Tian WQ |
616 - 620 |
Electrochemical performance of TiVNi-Quasicrystal and AB(3)-Type hydrogen storage alloy composite materials Liu WQ, Wang XL, Hu W, Kawabe Y, Watada M, Wang LM |
621 - 633 |
Sensitivity study of alanate hydride storage system Bhouri M, Goyette J, Hardy BJ, Anton DL |
634 - 638 |
Reaction stoichiometry between TiCl3 and NaAlH4 in Ti-doped alanate for hydrogen storage: The fate of the titanium species Zhang S, Lu C, Takeichi N, Kiyobayashi T, Kuriyama N |
639 - 647 |
A study of phase transformations during the development of pressure-composition-isotherms for electrodeposited Mg-Al alloys Tanniru M, Slattery DK, Ebrahimi F |
648 - 653 |
Optimization of the pore structure of nickel/graphite hybrid materials for hydrogen storage Kim BJ, Park SJ |
654 - 663 |
Hydrogen storage for off-grid power supply Gray EM, Webb CJ, Andrews J, Shabani B, Tsai PJ, Chan SLI |
664 - 670 |
VC3H3 organometallic compound: A possible hydrogen storage material Wadnerkar N, Kalamse V, Chaudhari A |
671 - 679 |
Acetic acid catalysed carbon xerogels derived from resorcinol-furfural for hydrogen storage Tian HY, Buckley CE, Paskeuicius M, Sheppard DA |
680 - 688 |
A feasibility analysis of hydrogen delivery system using liquid organic hydrides Pradhan AU, Shukla A, Pande JV, Karmarkar S, Biniwale RB |
689 - 705 |
Anodic behavior of 8Y(2)O(3)-ZrO2/NiO cermet using an anode-supported electrode Baek SW, Bae J |
706 - 712 |
Size-controlled synthesis of Pt nanoparticles and their electrochemical activities toward oxygen reduction Kim JW, Lim B, Jang HS, Hwang SJ, Yoo SJ, Ha JS, Cho EA, Lim TH, Nam SW, Kim SK |
713 - 719 |
Development of a cylindrical PEM fuel cell Bullecks B, Rengaswamy R, Bhattacharyya D, Campbell G |
720 - 724 |
Cobalt oxyphosphide as oxygen reduction electrocatalyst in proton exchange membrane fuel cell Wang MR, Zhang HM, Zhong HX, Ma YW |
725 - 731 |
A facile synthesis of Pd/C cathode electrocatalyst for proton exchange membrane fuel cells Tang YF, Zhang HM, Zhong HX, Ma YW |
732 - 739 |
Characterization of nitrogen gas crossover through the membrane in proton-exchange membrane fuel cells Baik KD, Kim MS |
740 - 746 |
Non intrusive diagnosis of polymer electrolyte fuel cells by wavelet packet transform Steiner NY, Hissel D, Mocoteguy P, Candusso D |
747 - 754 |
Preparation and characterization of ceramic interconnect La0.8Ca0.2Cr0.9M0.1O3-delta (M = Al, Co, Cu, Fe) for IT-SOFCs Fu YP, Wang HC |
755 - 764 |
Combustion-synthesized Ru-Al2O3 composites as anode catalyst layer of a solid oxide fuel cell operating on methane Wang W, Ran R, Shao ZP |
765 - 772 |
A parametric analysis of a micro-tubular, single-chamber solid oxide fuel cell (MT-SC-SOFC) Akhtar N, Decent SP, Kendall K |
773 - 778 |
Silver modified cathode for a micro-tubular, single-chamber solid oxide fuel cell Akhtar N, Kendall K |
779 - 786 |
Silver (Ag) as anode and cathode current collectors in high temperature planar solid oxide fuel cells De Silva KCR, Kaseman BJ, Bayless DJ |
787 - 796 |
Analysis of the regenerative H2S poisoning mechanism in Ce0.8Sm0.2O2-coated Ni/YSZ anodes for intermediate temperature solid oxide fuel cells Yun JW, Yoon SP, Park S, Kim HS, Nam SW |
797 - 804 |
Redox-induced performance degradation of anode-supported tubular solid oxide fuel cells Heo YH, Lee JW, Lee SB, Lim TH, Park SJ, Song RH, Park CO, Shin DR |
805 - 821 |
A fundamental study of chromium deposition and poisoning at (La0.8Sr0.2)(0.95)(Mn1-xCox)O-3 (+/- delta) (0.11 <= x 1.0) cathodes of solid oxide fuel cells Chen XB, Zhang L, Liu EJ, Jiang SP |
822 - 829 |
Effect of flow fields on the performance of micro-direct methanol fuel cells Lu YH, Reddy RG |
830 - 838 |
A flow field enabling operating direct methanol fuel cells with highly concentrated methanol Xu Q, Zhao TS, Yang WW, Chen R |
839 - 848 |
Facile synthesis of carbon-supported pseudo-core@shell PdCu@Pt nanoparticles for direct methanol fuel cells Wang H, Wang RF, Li H, Wang QF, Kang JA, Lei ZQ |
849 - 856 |
Electroless Ni-B supported on carbon for direct alcohol fuel cell applications Hassan HB, Hamid ZA |
857 - 868 |
A self-breathing metallic micro-direct methanol fuel cell with the improved cathode current collector Zhang YF, Zhang P, He H, Zhang B, Yuan ZY, Liu XW, Cui HY |
869 - 875 |
Response to Disselkamp: Direct peroxide/peroxide fuel cell as a novel type fuel cell Sanli AE, Aytac A |
876 - 884 |
A pilot-scale study on utilizing multi-anode/cathode microbial fuel cells (MAC MFCs) to enhance the power production in wastewater treatment Jiang DQ, Curtis M, Troop E, Scheible K, McGrath J, Hu BX, Suib S, Raymond D, Li BK |
885 - 892 |
Thermal modeling of a solid oxide fuel cell and micro gas turbine hybrid power system based on modified LS-SVM Wu XJ, Huang Q, Zhu XJ |
893 - 900 |
Cooperative effect of Co and Al on the microstructure and electrochemical properties of AB(3)-type hydrogen storage electrode alloys for advanced MH/Ni secondary battery Dong ZW, Ma LQ, Shen XD, Wang LM, Wu YM, Wang LD |
901 - 906 |
A study on ZrCrNiPtx alloys as negative electrode components for NiMH batteries Ruiz FC, Peretti HA, Visintin A, Triaca WE |
907 - 919 |
Simulation and experiment of a hydrogen liquefaction test rig using a multi-component refrigerant refrigeration system Krasae-in S, Bredesen AM, Stang JH, Neksa P |
920 - 930 |
Analysis and optimization of a metal hydride cooling system Paya J, Linder M, Mertz R, Corberan JM |
931 - 946 |
Second law analysis of hydrogen-air combustion in a spark ignition engine Ismail S, Mehta PS |
947 - 956 |
Prediction of performance and emissions of an engine fuelled with natural gas/hydrogen blends Tinaut FV, Melgar A, Gimenez B, Reyes M |
957 - 974 |
A correlation for the laminar burning velocity for use in hydrogen spark ignition engine simulation Verhelst S, T'Joen C, Vancoillie J, Demuynck J |
975 - 984 |
On the applicability of empirical heat transfer models for hydrogen combustion engines Demuynck J, De Paepe M, Huisseune H, Sierens R, Vancoillie J, Verhelst S |
985 - 991 |
Laminar premixed flame characteristics of hydrogen blended iso-octane-air-nitrogen mixtures Tahtouh T, Halter F, Mounaim-Rousselle C |
992 - 1005 |
Characterization of syngas laminar flames using the Bunsen burner configuration Bouvet N, Chauveau C, Gokalp I, Lee SY, Santoro RJ |
1006 - 1013 |
The correlation model between the hydrogen content and the flow stress in the isothermal compression of Ti600 alloy Niu Y, Luo J, Li MQ |
1014 - 1026 |
Hydrogen permeability of Pd-Ag membrane modules with porous stainless steel substrates Xie DL, Yu JF, Wang F, Zhang N, Wang WX, Yu H, Peng F, Park AHA |
1027 - 1036 |
Investigation of melt hydrogenation on the microstructure and deformation behavior of Ti-6Al-4V alloy Su YQ, Wang LA, Luo LS, Liu XW, Guo JJ, Fu HZ |
1037 - 1045 |
Hydrogen diffusion analyses of a cracked steel pipe under internal pressure Takayama K, Matsumoto R, Taketomi S, Miyazaki N |
1046 - 1052 |
Structural, electronic and magnetic properties of YFeMnH5 Drozd V, Kuo HT, Bagkar N, Mylswamy S, Liu RS, Paul-Boncour V, Marchuk I, Filipek SM, Chou CC, Sun CP, Yang HD, Chen JM |
1053 - 1058 |
Different possible hydrogenation in narrow SWCNTs and their electronic characteristics Khoshnevisan B, Aghtar M, Kachoei MY |
1059 - 1065 |
Rapid hydrogenation at 30 degrees C of magnesium (Mg) and iron (Fe) nanocomposite obtained through a decomposition of Mg2FeH6 precursor Polanski M, Bystrzycki J, Varin RA, Plocinski T |
1066 - 1073 |
Palladium membrane on TiO2 nanotube arrays-covered titanium surface by combination of photocatalytic deposition and modified electroless plating processes and its hydrogen permeability Zhao R, Ding RF, Yuan SJ, Jiang W, Liang B |
1074 - 1082 |
High throughput screening of Pd-alloys for H-2 separation membranes studied by hydrogenography and CVM Westertwaal RJ, den Besten C, Slaman M, Dam B, Nanu DE, Bottger AJ, Haije WG |
1083 - 1093 |
Numerical simulations of hydrogen and hydrogen chloride releases in a nuclear hydrogen production facility Sully A, Heitsch M, Baraldi D, Wilkening H |
1094 - 1106 |
Vertical release of hydrogen in a partially enclosed compartment: Role of wind and buoyancy Prasad K, Yang J |
1107 - 1114 |
Highly sensitive hydrogen sensors based on co-sputtered platinum-activated tungsten oxide films Zhang C, Boudiba A, Navio C, Bittencourt C, Olivier MG, Snyders R, Debliquy M |
1115 - 1121 |
Gas hydrate formation method to capture the carbon dioxide for pre-combustion process in IGCC plant Kim SM, Lee JD, Lee HJ, Lee EK, Kim Y |
1122 - 1135 |
Emissions of anthropogenic hydrogen to the atmosphere during the potential transition to an increasingly H-2-intensive economy Bond SW, Gul T, Reimann S, Buchmann B, Wokaun A |
1136 - 1137 |
My 25 years of teaching at KFUPM (King Fand University of Petroleum & Minerals) and the equation of driving force Abdel-Aal HK |
1138 - 1138 |
11th International Conference: "Hydrogen Materials Science & Chemistry of Carbon Nanomaterials" Preface Schur DV, Zaginaichenko SY |
1143 - 1151 |
Experimental evaluation of total hydrogen capacity for fullerite C-60 Schur DV, Zaginaichenko SY, Savenko AF, Bogolepov VA, Anikina NS, Zolotarenko AD, Matysina ZA, Veziroglu TN, Skryabina NE |
1152 - 1158 |
The structural vacancies in palladium hydride. Phase diagram Zaginaichenko SY, Matysina ZA, Schur DV, Teslenko LO, Veziroglu A |
1159 - 1166 |
A new nanonickel catalyst for hydrogen storage in solid-state magnesium hydrides Wronski ZS, Carpenter GJC, Czujko T, Varin RA |
1167 - 1176 |
The effects of nanonickel additive on the decomposition of complex metal hydride LiAlH4 (lithium alanate) Varin RA, Zbroniec L, Czujko T, Wronski ZS |
1177 - 1183 |
The composites of magnesium hydride and iron-titanium intermetallic Varin RA, Zaranski Z, Czujko T, Polanski M, Wronski ZS |
1184 - 1189 |
Changes of hydrogen storage properties of MgH2 induced by boron ion irradiation Kurko S, Matovic L, Novakovic N, Matovic B, Jovanovic Z, Mamula BP, Novakovic JG |
1190 - 1191 |
Mechano-chemical method of alkali-earth metals hydrides and lanthanides borohydrides production Mirsaidov U |
1192 - 1195 |
Hydrogen diagnostics of structural states 18Cr10NiTi steel Neklyudov IM, Morozov OM, Kulish VG, Zhurba VI, Khaimovich PA, Galitskiy AG |
1196 - 1199 |
Metal-hydride accumulators and generators of hydrogen for feeding fuel cells Tarasov BP |
1200 - 1205 |
Catalyzed LiBH4 and MgH2 mixture for hydrogen storage Sridechprasat P, Suttisawat Y, Rangsunvigit P, Kitiyanan B, Kulprathipanja S |
1206 - 1208 |
The formation of quasicrystals and their hydrides in Ti-Zr-Ni system Shekhtman VS, Hakobyan HG, Aleksanyan AG, Dolukhanyan SK, Ter-Galstyan OP, Sakharov MK |
1209 - 1211 |
Hydrogen induced phase transitions in amorphous alloys Somenkov VA, Agafonov SS, Glazkov VP, Syrykh GF, Verbetsky VN, Yaropolov YL |
1212 - 1216 |
Computer modeling of hydrogen fuel cell subsystems: Carbon nanogel electrodes and fractal nanoparticle catalysts Zhukovsky MS, Fomina LV, Beznosyuk SA |
1217 - 1221 |
Investigation of Ti1.5Al-NH3 and Ti2Al-NH3 systems Fokin VN, Fokina EE, Korobov II, Tarasov BP |
1222 - 1225 |
Hydrogen interaction with IMC RNi (R = Sm, Tb, Gd, Dy) Yaropolov YL, Verbetsky VN, Somenkov VA, Glazkov VP |
1226 - 1229 |
Problems of designing fuel cell power plants for submarines Nikiforov BV, Chigarev AV |
1230 - 1235 |
Energy-technology installations for combined production of hydrogen and electricity with CO2 removal systems Kler AM, Tyurina EA, Mednikov AS |
1236 - 1238 |
Investigation of electrochemically hydrogenated carbon nanotubes Khantimerov SM, Suleimanov NM, Kukovitsky EF, Gnezdilov OI, Matukhin VL, Sakhratov YA |
1239 - 1247 |
Numerical modelling of hydrogen desorption from cylindrical surface Rodchenkova NI, Zaika YV |
1248 - 1253 |
SR-based method of X-ray structural analysis of nanoparticles Yurjev GS, Mamontov EV |
1254 - 1258 |
Dynamic stability of palladium hydride: An ab initio study Isaeva LE, Bazhanov DI, Isaev EI, Eremeev SV, Kulkova SE, Abrikosov IA |
1259 - 1263 |
Solid phase nanoreactor based on polycalix[4]resorcinarene for catalytic processes with participation of hydrogen and oxygen Sapozhnikova L, Altshuler O, Malyshenko N, Shkurenko G, Ostapova E, Tryasunov B, Altshuler H |
1264 - 1270 |
From micro- to nano-size catalytic membrane hydrogenation reactors with accumulated hydrogen Soldatov AP, Tsodikov MV, Bichkov VY, Parenago OP, Korchak VN, Teplyakov VV |
1271 - 1275 |
Low temperature hydrogen purification from CO for fuel cell application over copper-ceria catalysts supported on different oxides Kosmambetova GR, Moroz EM, Guralsky AV, Pakharukova VP, Boronin AI, Ivashchenko TS, Gritsenko VI, Strizhak PE |
1276 - 1286 |
Ti3Al destructive hydrogenation Bratanich TI, Skorokhod VV, Kopylova LI, Kotko AV |
1287 - 1291 |
Nanosystem accumulators of hydrogen: Quantum polycondensates of hydrogen biradicals in carbon nanotubes Maslova OA, Vazhenin SV, Zhukovsky TM, Zhukovsky MS, Beznosyuk SA |
1292 - 1294 |
Interaction in CeCo2.95M0.05-H-2 (M-Cu, Si) system Lushnikov SA, Bobrov NA, Novikov DY, Verbetsky VN |
1295 - 1305 |
Parametric identification of hydrogen permeability model by delay times and conjugate equations Zaika YV, Bormatova EP |
1306 - 1308 |
The combustion processes in Ti-V-Cr-C-H system and synthesis of complex carbohydrides Aghajanyan NN, Dolukhanyan SK, Ter-Galstyan OP |
1309 - 1311 |
Thermal stability and thermodynamic properties of tristetrahydrofuranates lanthanide borohydrides Gafurov BA, Khakerov IZ, Badalov AB, Mirsaidov IU |
1312 - 1315 |
Phase transformations in Ti2Cu during destructive hydrogenation Bratanich TI, Skorokhod VV, Kucheriavyi OV, Kopylova LI, Krapivka NA |
1316 - 1320 |
Electrolyses model development for metal/electrolyte interface: Testing with microrespiration sensors Vanags M, Kleperis J, Bajars G |
1321 - 1325 |
Hydrogen-generating compositions based on magnesium Kushch SD, Kuyunko NS, Nazarov RS, Tarasov BP |
1326 - 1329 |
Influence of carbonaceous additives on hydrogen sorption properties of Mg-RE-Ni "pseudoalloys" Borisov DN, Fursikov PV, Tarasov BP |
1330 - 1337 |
Ti3Al recombination and detonation coats on its basis with improved characteristics Bratanich TI, Skorokhod VV, Kopylova LI, Kotko AV, Oliker VY |
1338 - 1343 |
Stable superstructures in a binary honeycomb-lattice gas Radchenko TM, Tatarenko VA |
1344 - 1348 |
Calorimetric investigation of the hydrogen interaction with Ti0.9Zr0.1Mn1.2V0.1 Anikina EY, Verbetsky VN |
1349 - 1354 |
Mass-spectrometric investigation of gases evolved by fluorinated single-wall carbon nanotubes during heating Shulga YM, Martynenko VM, Krestinin AV, Kharitonov AP, Davidova GI, Knerelman EI, Krastev VI, Schur DV |
1355 - 1358 |
Hydrogen sorption properties of ZrFex (1.9 <= x <= 2.5) alloys Sivov RB, Zotov TA, Verbetsky VN |
1359 - 1363 |
Hydrogen sorption properties of hexagonal laves phase TiMn1.5 intermetallic compound Marinin VS, Umerenkova KR, Volovchuk OV |
1364 - 1368 |
Nanocomposite Ni/TiO2-materials for hydrogen generation systems Yermokhina NI, Bukhtiyarov VK, Kishenya YV, Illin VG, Manorik PA, Kapitanchuk LM, Smiyan OD, Puziy AM, Kamenskih DS, Bortyshevskyy VA |
1369 - 1369 |
In memory of Alexey Lvovich Shilov (1.07.51-8.11.09) Veziroglu TN, Schur DV, Zaginaichenko SY, Kuznetsov NT, Padurets LN |
1370 - 1370 |
In memory of Yu. F. Shmalko (14.04.1948-12.10.2008) Veziroglu TN, Marinin VS, Umerenkova KR |