14467 - 14480 |
Experimental studies of natural convective mass transfer in a water-splitting system Babu R, Das MK |
14481 - 14492 |
Development of anion conducting zeolitic imidazolate framework bottle around ship incorporated with ionic liquids Zhang TT, Yu GL, Liang XQ, Zhao N, Zhang F, Qu FY |
14493 - 14499 |
Effects of a YSZ porous layer between electrolyte and oxygen electrode in solid oxide electrolysis cells on the electrochemical performance and stability Su CX, Lu Z, Wang CQ, Li JW, Li PZ, Yue X, Li H |
14500 - 14526 |
The Sono-Hydro-Gen process (Ultrasound induced hydrogen production): Challenges and opportunities Rashwan SS, Dincer I, Mohany A, Pollet BG |
14527 - 14535 |
One-pot production of gamma-valerolactone from furfural using Zr-graphitic carbon nitride/H-beta composite Zhang TW, Lu YJ, Li WZ, Su MX, Yang T, Ogunbiyi A, Jin YC |
14536 - 14549 |
Gibbs free energy (Delta G) analysis for the Na-O-H (sodium-oxygen-hydrogen) thermochemical water splitting cycle Marques JGO, Costa AL, Pereira C |
14550 - 14560 |
Well-dispersed CoSx nanoparticles modified tubular sulfur doped carbon nitride for enhanced photocatalytic H-2 production activity Shen QH, Bibi R, Wei LF, Hao DD, Li NX, Zhou JC |
14561 - 14570 |
Three-dimensional plasmonic photoanode of Co3O4 nanosheets coated onto TiO2 nanorod arrays for visible-light-driven water splitting Zhao X, Wang WZ, Liang YJ, Yao LZ, Fu JL, Shi HL, Tao CJ |
14571 - 14579 |
Application of ANOVA method to study solar energy for hydrogen production Hossain MS, Rahim NA, Aman MM, Selvaraj J |
14580 - 14587 |
The synthesis and characterization of carbon dots and their application in dye sensitized solar cell Ghann W, Sharma V, Kang H, Karim F, Richards B, Mobin SM, Uddin J, Rahman MM, Hossain F, Kabir H, Uddin N |
14588 - 14595 |
Electrochemical nano-patterning of brass for stable and visible light-induced photoelectrochemical water splitting Eissa DS, El-Hagar SS, Ashour EA, Allam NK |
14596 - 14604 |
Construction and operation of hydrogen energy utilization system for a zero emission building Endo N, Shimoda E, Goshome K, Yamane T, Nozu T, Maeda T |
14605 - 14623 |
Hydrogen production from sucrose via aqueous-phase reforming Godina LI, Heeres H, Garcia S, Bennett S, Poulston S, Murzin DY |
14624 - 14634 |
Photocatalytic H-2 production over RuO2@ZnS and RuO2@CuS nanostructures Wojtyla S, Baran T |
14635 - 14641 |
Hybrid amorphous MoSx-graphene protected Cu2O photocathode for better performance in H-2 evolution Le HV, Le LT, Tran PD, Chang JS, Thuy UTD, Liem NQ |
14642 - 14660 |
Enhanced control strategies for a hybrid battery/photovoltaic system using FGS PID in grid-connected mode Dadfar S, Wakil K, Khaksar M, Rezvani A, Miveh MR, Gandomkar M |
14661 - 14670 |
Conjoint effect of microwave irradiation and metal nanoparticles on biogas augmentation from anaerobic digestion of green algae Zaidi AA, Feng RZ, Malik A, Khan SZ, Bhutta AJ, Shi Y, Mushtaq K |
14671 - 14682 |
Renewable hydrogen production via steam reforming of simulated bio-oil over Ni-based catalysts Italiano C, Bizkarra K, Barrio VL, Cambra JF, Pino L, Vita A |
14683 - 14693 |
Investigating how biomass hydrolysis derivatives inhibit H-2 production by an isolated Clostridium beijerinckii Giraldeli LD, Fonseca BC, Reginatto V |
14694 - 14706 |
Co-digestion of cassava starch wastewater with buffalo dung for bio-hydrogen production Wadjeam P, Reungsang A, Imai T, Plangklang P |
14707 - 14714 |
New methods for hydrogen production by marine microalga Chlorella pyrenoidosa in natural seawater Shastik E, Li L, Liu JG |
14715 - 14720 |
A novel method for increasing biohydrogen production from food waste using electrodialysis Hassan GK, Massanet-Nicolau J, Dinsdale R, Jones RJ, Abo-Aly MM, El-Gohary FA, Guwy A |
14721 - 14731 |
Membrane bubble column reactor model for the production of hydrogen by methane pyrolysis Farmer TC, McFarland EW, Doherty MF |
14732 - 14743 |
Exploring the opportunities for carbon capture in modular, small-scale steam methane reforming: An energetic perspective Sharma I, Friedrich D, Golden T, Brandani S |
14744 - 14769 |
Recent progress of anode catalysts and their support materials for methanol electrooxidation reaction Mansor M, Timmiati SN, Lim KL, Wong WY, Kamarudin SK, Kamarudin NHN |
14770 - 14779 |
3D graphene decorated with hexagonal micro-coin of Co(OH)(2): A competent electrocatalyst for hydrogen and oxygen evolution reaction Ullah N, Shah SA, Xie M, Rasheed HU, Oluigbo CJ, Jiang D, Xu YG, Xie JM |
14780 - 14795 |
Dihydroazulene-vinylheptafulvene based photoswitchable lewis pairs for tunable H-2 activation Sheikh NS, Hashmi MA, Munsif S, Gilani MA, Alkhalifah MA, Khan A, Ayub K |
14796 - 14807 |
Efficient H-2 production by photocatalytic water splitting under UV or solar light over variously modified TiO2-based catalysts Fiorenza R, Scire S, D'Urso L, Compagnini G, Bellardita M, Palmisano L |
14808 - 14819 |
Enhanced Electro-catalytic Activity of Nitrogen-doped Reduced Graphene Oxide Supported PdCu Nanoparticles for Formic Acid Electro-oxidation Chowdhury SR, Maiyalagan T |
14820 - 14830 |
Effect of LDH composition on the catalytic activity of Ru/LDH for the hydrolytic dehydrogenation of ammonia borane Zhao W, Wang RY, Wang Y, Feng JW, Li CC, Chen GZ |
14831 - 14841 |
CO2 hydrogenation to methanol over CuO-ZnO-TiO2-ZrO2 catalyst prepared by a facile solid-state route: The significant influence of assistant complexing agents Xiao J, Mao DS, Wang G, Guo XM, Yu J |
14842 - 14852 |
A highly active oxygen evolution electrocatalyst: Ni-Fe-layered double hydroxide intercalated with the Molybdate and Vanadate anions Nejati K, Davari S, Akbari A, Asadpour-Zeynali K, Rezvani Z |
14853 - 14860 |
An important parameter for synthesis of Al2O3 supported Cu-Zn catalysts in low-temperature water-gas shift reaction under practical reaction condition Shim JO, Na HS, Ahn SY, Jeon KW, Jang WJ, Jeon BH, Roh HS |
14861 - 14868 |
Single Mo atoms supported on N-Doped carbon with N/C edge-site for enhanced electrochemical hydrogen evolution Gao XP, Zhou YA, Tan YJ, Yang BW, Cheng ZW, Shen ZM |
14869 - 14876 |
Nickel doped cobalt - hollow nanoparticles as an efficient electrocatalyst for hydrogen evolution from neutral water Abdullah MI, Hameed A, Zhang N, Ma MM |
14877 - 14888 |
Solution blow spun nickel oxide/carbon nanocomposite hollow fibres as an efficient oxygen evolution reaction electrocatalyst Silva VD, Simoes TA, Loureiro FJA, Fagg DP, Figueiredo FML, Medeiros ES, Macedo DA |
14889 - 14907 |
Ordered mesoporous Fe-Al2O3 based-catalysts synthesized via a direct "one-pot" method for the dry reforming of a model biogas mixture Jabbour K, Saad A, Inaty L, Davidson A, Massiani P, El Hassan N |
14908 - 14917 |
Ultrafine and highly-dispersed bimetal Ni2P/Co2P encapsulated by hollow N-doped carbon nanospheres for efficient hydrogen evolution Zhang XY, Guo BY, Chen QW, Dong B, Zhang JQ, Qin JF, Xie JY, Yang M, Wang L, Chai YM, Liu CG |
14918 - 14926 |
Layered Au-Pd-Au nanorod catalysts: Pd-layer thickness effects on catalyst performance Laghrissi A, Es-Souni M |
14927 - 14937 |
One-pot synthesis of non-noble metal WS2/g-C3N4 photocatalysts with enhanced photocatalytic hydrogen production Zhou YL, Ye XY, Lin DY |
14938 - 14944 |
In situ fabrication of nanostructured Au-B-i as high-efficient electrocatalyst for water splitting Zhao Q, Guo WJ, Liu FY, Liu L, Li DD, Zhong DZ, Hao GY |
14945 - 14954 |
A new insight into Au/TiO2-catalyzed hydrogen production from water-methanol mixture using lamps containing simultaneous ultraviolet and visible radiation Mendez FJ, Gonzalez-Millan A, Garcia-Macedo JA |
14955 - 14967 |
In-situ surface selective removal: An efficient way to prepare water oxidation catalyst Wang P, Qi J, Li C, Chen X, Luo JJ, Li WP, Shi XD, Olivet L, Wang TH, Liang CH |
14968 - 14980 |
Vapour phase hydrodeoxygenation of furfural into fuel grade compounds on NiPMoS catalyst: Synergetic effect of NiP and laponite support Krishnan PS, Tamizhdurai P, Alagarasi A, Shanthi K |
14981 - 14991 |
Catalytic activities of non-noble metal catalysts (Cu-B, Fe-B, and Ni-B) with C.Vulgaris microalgal strain support modified by using phosphoric acid for hydrogen generation from sodium borohydride methanolysis Bekirogullari M |
14992 - 15000 |
Effect of ZSM-5-carbon black composites as supports on the activity of Pd nanoparticles for propan-1-ol oxidation Cai N, Wu JL, Jin CC |
15001 - 15008 |
Fabrication of nanoporous gold-islands via hydrogen bubble template: An efficient electrocatalyst for oxygen reduction and hydrogen evolution reactions Hernandez-Saravia LP, Sukeri A, Bertotti M |
15009 - 15016 |
Engineering of molybdenum sulfide nanostructures towards efficient electrocatalytic hydrogen evolution Xie S, Sun BW, Sun H, Zhan K, Zhao B, Yan Y, Xia BY |
15017 - 15025 |
Amino acids assisted hydrothermal synthesis of W-type SrFe18O27 nanostructures; a potential hydrodesulfurization catalyst Mandizadeh S, Salehabadi A, Amiri O, Salavati-Niasari M |
15026 - 15044 |
Liquid hydrogen, methylcyclohexane, and ammonia as potential hydrogen storage: Comparison review Wijayanta AT, Oda T, Purnomo CW, Kashiwagi T, Aziz M |
15045 - 15055 |
Minimum entropy generation in a heat exchanger in the cryogenic part of the hydrogen liquefaction process: On the validity of equipartition and disappearance of the highway Hande R, Wilhelmsen O |
15056 - 15071 |
Analysis and assessment of partial re-liquefaction system for liquefied hydrogen tankers using liquefied natural gas (LNG) and H-2 hybrid propulsion Lee H, Shao Y, Lee S, Roh G, Chun K, Kang H |
15072 - 15086 |
Hydrogen energy, economy and storage: Review and recommendation Abe JO, Popoola API, Ajenifuja E, Popoola OM |
15087 - 15099 |
Development of Ti1.02Cr2-x-yFexMny (0.6 <= x <= 0.75, y=0.25, 0.3) alloys for high hydrogen pressure metal hydride system Li JG, Jiang XJ, Li GL, Li XG |
15100 - 15109 |
Highly dispersed metal nanoparticles on TiO2 acted as nano redox reactor and its synergistic catalysis on the hydrogen storage properties of magnesium hydride Chen M, Xiao XZ, Zhang M, Zheng JG, Liu MJ, Wang XC, Jiang LJ, Chen LX |
15110 - 15117 |
High-capacity hydrogen generation from hydrazine monohydrate using a noble-metal-free Ni10Mo/Ni-Mo-O nanocatalyst Qiu YP, Cao GX, Wen H, Shi Q, Dai H, Wang P |
15118 - 15134 |
Hydrogen storage systems for fuel cells: Comparison between high and low-temperature metal hydrides Gambini M, Stilo T, Vellini M |
15135 - 15145 |
Estimation of system-level hydrogen storage for metal-organic frameworks with high volumetric storage density Purewal J, Veenstra M, Tamburello D, Ahmed A, Matzger AJ, Wong-Foy AG, Seth S, Liu YY, Siegel DJ |
15146 - 15158 |
Hydrogen storage properties of nanostructured 2MgH(2)-Co powders: The effect of high-pressure compression Khan D, Zou JX, Pan MG, Ma ZW, Zhu W, Huang TP, Zeng XQ, Ding WJ |
15159 - 15172 |
Stability of LaNi5-xCox alloys cycled in hydrogen - Part 1 evolution in gaseous hydrogen storage performance Zhu ZD, Zhu S, Lu HQ, Wu J, Yan K, Cheng HH, Liu JJ |
15173 - 15182 |
Investigation of structural, electronic and lattice dynamical properties of XNiH3 (X = Li, Na and K) perovskite type hydrides and their hydrogen storage applications Gencer A, Surucu G |
15183 - 15192 |
A DFT study of H-2 adsorption on lithium decorated 3D hybrid Boron-Nitride-Carbon frameworks Bi L, Yin J, Huang X, Wang YH, Yang ZH |
15193 - 15204 |
Preliminary assessment of underground hydrogen storage sites in Ontario, Canada Lemieux A, Sharp K, Shkarupin A |
15205 - 15217 |
Fabrication and optical property improvement of gasochromic switchable mirror based on Pd/Mg-Nb2O5 thin film Liu Y, Chen J, Peng LM, Deng NX, Ding WJ |
15218 - 15227 |
Hydrogen sorption kinetics, hydrogen permeability, and thermal properties of compacted 2LiBH(4)-MgH2 doped with activated carbon nanofibers Thiangviriya S, Sitthiwet C, Plerdsranoy P, Capurso G, Pistidda C, Utke O, Dornheim M, Klassen T, Utke R |
15228 - 15238 |
Effect of iron content on the hydrogen production kinetics of electroless-deposited Co-Ni-Fe-P alloy catalysts from the hydrolysis of sodium borohydride, and a study of its feasibility in a new hydrolysis using magnesium and calcium borohydrides Kim DH, Jo S, Kwon J, Lee S, Eom K |
15239 - 15245 |
Mg@C-60 nano-lamellae and its 12.50 wt% hydrogen storage capacity Wang Y, Luo K, Ye W, Du SY, Francisco JS, Yin JS, Gao P |
15246 - 15261 |
Node-based vs. path-based location models for urban hydrogen refueling stations: Comparing convenience and coverage abilities Honma Y, Kuby M |
15262 - 15277 |
Multi-component high aspect ratio turbulent jets issuing from non-planar nozzles Nia MS, Oshkai P, Djilali N |
15278 - 15286 |
SOC-dependent high-rate dischargeability of AB(5)-type metal hydride anode: Mechanism linking phase transition to electrochemical H-desorption kinetics Zhu D, Zhou WH, Tang ZY, Heng Y, Liu K, Li JC, Xie LZ, Chen YG |
15287 - 15312 |
Applications of enzymatic biofuel cells in bioelectronic devices - A review Nasar A, Perveen R |
15313 - 15321 |
Combined methane reforming by carbon dioxide and steam in proton conducting solid oxide fuel cells for syngas/power co-generation Chen B, Xu HR, Zhang Y, Dong FF, Tan P, Zhao TS, Ni M |
15322 - 15332 |
Study on improvement of the proton conductivity and anti-fouling of proton exchange membrane by doping SGO@SiO2 in microbial fuel cell applications Xu QB, Wang L, Li C, Wang XD, Li CC, Geng YT |
15333 - 15343 |
Performance prediction and evaluation of the scroll-type hydrogen pump for FCVs based on CFD-Taguchi method Zhang QQ, Feng JM, Zhang QQ, Peng XY |
15344 - 15354 |
Response of ceramic microbial fuel cells to direct anodic airflow and novel hydrogel cathodes Winfield J, Greenman J, Ieropoulos I |
15355 - 15369 |
ANFIS-MPPT control algorithm for a PEMFC system used in electric vehicle applications Reddy KJ, Sudhakar N |
15370 - 15376 |
Fast ion channels for crab shell-based electrolyte fuel cells Liu L, Li LY, Yang YC, Wu Y, Zhu B |
15377 - 15386 |
Microbial fuel cells: A fast converging dynamic model for assessing system performance based on bioanode kinetics Gadkari S, Shemfe M, Sadhukhan J |
15387 - 15399 |
A strontium-free and iron-based oxygen electrode for solid-oxide electrochemical cells (SOCs) Zeng QM, Liu XJ, Xie DT, Ni JP, Ni CS |
15400 - 15408 |
A novel dual phase BaCe0.5Fe0.5O3-delta cathode with high oxygen electrocatalysis activity for intermediate temperature solid oxide fuel cells Zhu L, Hong T, Xu CX, Cheng JG |
15409 - 15416 |
DFT-based study of single transition metal atom doped g-C3N4 as alternative oxygen reduction reaction catalysts Chen X, Hu R |
15417 - 15435 |
Development of Pr2-xSrxCuO4 +/-delta mixed ion-electron conducting system as cathode for intermediate temperature solid oxide fuel cell Khandale AP, Pahune BS, Bhoga SS, Kumar RV, Tomov R |
15436 - 15440 |
Deuterium isotope separation by polymer electrolyte fuel cells connected in series Matsushima H, Ogawa R, Ueda M |
15441 - 15455 |
CFD modelling and experimental validation of cell performance in a 3-D planar SOFC Tikiz I, Taymaz I, Pehlivan H |
15456 - 15481 |
Three-dimensional micro/macroscale simulation of planar, anode-supported, intermediate-temperature solid oxide fuel cells: I. Model development for hydrogen fueled operation Baek SM, Jeong A, Nam JH, Kim CJ |
15482 - 15493 |
Pendent piperidinium-functionalized blend anion exchange membrane for fuel cell application Niu MY, Zhang CM, He GH, Zhang FX, Wu XM |
15494 - 15510 |
Fuel processor-battery-fuel cell hybrid drivetrain for extended range operation of passenger vehicles Purnima P, Jayanti S |
15511 - 15522 |
Parametric study on combustion characteristics of virtual. HCCI engine fueled with methane-hydrogen blends under low load conditions Yoon W, Park J |
15523 - 15535 |
Experimental study on the detonation propagation behaviors through a small-bore orifice plate in hydrogen-air mixtures Sun XX, Li Q, Xu MJ, Wang LQ, Guo J, Lu SX |
15536 - 15552 |
Numerical research of rotating detonation initiation processes with different injection patterns Zheng YS, Wang C, Wang YH, Liu Y, Yan ZH |
15553 - 15564 |
Experimental study on explosion characteristics of syngas with different ignition positions and hydrogen fraction Yu MG, Luan PP, Zheng K, Yang XF, Han SX, Duan YL |
15565 - 15574 |
Effects of hydrogen addition on engine performance in a spark ignition engine with a high compression ratio under lean burn conditions Naruke M, Morie K, Sakaida S, Tanaka K, Konno M |
15575 - 15586 |
Effects of ignition advance on a dual sequential ignition engine at lean mixture for hydrogen enriched butane usage Yontar AA |
15587 - 15597 |
Numerical study on stability and influencing factors of heterogeneous reaction for hydrogen/oxygen mixture in planar catalytic micro combustor Pan JF, Zhang Y, Lu QB, Shao X, Quaye EK, Zhu YJ |
15598 - 15609 |
Excitation of high frequency thermoacoustic oscillations by syngas in a non-premixed bluff body combustor Baraiya NA, Chakravarthy SR |
15610 - 15621 |
Numerical study of blended fuel natural gas-hydrogen combustion in rich/quench/lean combustor of a micro gas turbine Meziane S, Bentebbiche A |
15622 - 15633 |
Characterization and corrosion behaviour of grade 2 titanium used in electrolyzers for hydrogen production Dubent S, Mazard A |
15634 - 15643 |
Hydrogen embrittlement of structural steels: Effect of the displacement rate on the fracture toughness of high-pressure hydrogen pre-charged samples Alvarez G, Peral LB, Rodriguez C, Garcia TE, Belzunce FJ |
15644 - 15656 |
Estimating leaked hydrogen gas flow in confined space through coupling zone model and point source buoyancy plume theory Wang QH, Zhai CJ, Gong JH, Jiang JC, Wang ZR, Zhou Y |
15657 - 15664 |
Pyroelectric sensor based on Pb(Mg1/3Nb2/3)(1-x)Ti(x)O(3 )single crystals for solid state hydrogen storage reactors Alaoui-Belghiti A, Lifi H, Laasri S, Touhtouh S, Hajjaji A |
15665 - 15676 |
Fast hydrogen diffusion induced by hydrogen pre-split for gasochromic based optical hydrogen sensors Wang HR, Gao GH, Wu GM, Zhao HY, Qi WY, Chen KC, Zhang W, Li YY |
15677 - 15688 |
High response and low concentration hydrogen gas sensing properties using hollow ZnO particles transformed from polystyrene@ZnO core-shell structures Nakate UT, Ahmad R, Patil P, Bhat KS, Wang YS, Mahmoudi T, Yu YT, Suh EK, Hahn YB |
15689 - 15701 |
Numerical study of the effects of vent opening time on hydrogen explosions Pang L, Hu QR, Zhao JJ, Lv PF, Sun SH, Yang K |