2579 - 2588 |
The hydrogen economy: Its history Bockris JOM |
2589 - 2595 |
Electrochemical analysis of seawater electrolysis with molybdenum-oxo catalysts Baniasadi E, Dincer I, Naterer GF |
2596 - 2609 |
One-dimensional dynamic modeling of a high-pressure water electrolysis system for hydrogen production Kim H, Park M, Lee KS |
2610 - 2623 |
Energy transport inside a three-phase electrode and application to a proton-conducting solid oxide electrolysis cell Dumortier M, Sanchez J, Keddam M, Lacroix O |
2624 - 2633 |
Hydrogen generation with CO2 utilization: A solvay cluster study Kale GR, Kulkarni BD |
2634 - 2640 |
Hierarchical Gd-La codoped TiO2 microspheres as robust photocatalysts Lin L, Chai YC, Yang YC, Wang X, He DN, Tang QW, Ghoshroy S |
2641 - 2655 |
A hybrid power plant (Solar-Wind-Hydrogen) model based in artificial intelligence for a remote-housing application in Mexico Chavez-Ramirez AU, Vallejo-Becerra V, Cruz JC, Ornelas R, Orozco G, Munoz-Guerrero R, Arriaga LG |
2656 - 2669 |
Synthesis and characterization of ligand stabilized CdS-Trititanate composite materials for visible light-induced photocatalytic water splitting Parayil SK, Baltrusaitis J, Wu CM, Koodali RT |
2670 - 2677 |
Nanocomposite of graphene oxide with nitrogen-doped TiO2 exhibiting enhanced photocatalytic efficiency for hydrogen evolution Pei FY, Liu GL, Xu SG, Lu J, Wang CX, Cao SK |
2678 - 2700 |
Catalytic valorization of glycerol to hydrogen and syngas Lin YC |
2701 - 2708 |
Hydrogen gas production from vinegar fermentation wastewater by electro-hydrolysis: Effects of initial COD content Kargi F, Arikan S |
2709 - 2718 |
A microbiological study of biohydrogen production from beer lees Bando Y, Fujimoto N, Suzuki M, Ohnishi A |
2719 - 2727 |
Exogenous anthrahydroquinone-2,6-disulfonate specifically increases xylose utilization during mixed sugar fermentation by Clostridium beijerinckii NCIMB 8052 Ye XF, Zhang XY, Morgenroth E, Finneran KT |
2728 - 2737 |
Impact of regulated pH on proto scale hydrogen production from xylose by an alkaline tolerant novel bacterial strain, Enterobacter cloacae DT-1 Subudhi S, Nayak T, Kumar NR, Vijayananth P, Lal B |
2738 - 2745 |
Lime mud from paper-making process addition to food waste synergistically enhances hydrogen fermentation performance Zhang JS, Wang QQ, Jiang JG |
2746 - 2753 |
Oxygen evolution at ultrathin nanostructured Ni(OH)(2) layers deposited on conducting glass Cibrev D, Jankulovska M, Lana-Villarreal T, Gomez R |
2754 - 2759 |
One-step dual template synthesis of platinum on mesoporous carbon nanowires for electrocatalysts Xue T, Sun ZP, Wei L, Wang X, Lee JM |
2760 - 2769 |
Hydrogen production from an ethanol reformer with energy saving approaches over various catalysts Chiu WC, Horng RF, Chou HM |
2770 - 2777 |
Improved reversible hydrogen storage of LiAlH4 by nano-sized TiH2 Liu SS, Li ZB, Jiao CL, Si XL, Yang LN, Zhang J, Zhou HY, Huang FL, Gabelica Z, Schick C, Sun LX, Xu F |
2778 - 2784 |
Studies on de/rehydrogenation characteristics of nanocrystalline MgH2 co-catalyzed with Ti, Fe and Ni Shahi RR, Tiwari AP, Shaz MA, Srivastava ON |
2785 - 2789 |
The influence of the milling time on the yield of Mg2FeH6 from a two-step synthesis conducted in a custom-made reactor Polanski M, Witek K, Nielsen TK, Jaroszewicz L, Bystrzycki J |
2790 - 2795 |
Insight into the decomposition pathway of the complex hydride Al3Li4(BH4)(13) Lindemann I, Borgschulte A, Callini E, Zuttel A, Schultz L, Gutfleisch O |
2796 - 2803 |
Enhanced dehydrogenation and rehydrogenation properties of LiBH4 catalyzed by graphene Xu J, Meng RR, Cao JY, Gu XF, Qi ZQ, Wang WC, Chen ZD |
2804 - 2809 |
Thermochemical production of sodium borohydride from sodium metaborate in a scaled-up reactor Eom K, Cho E, Kim M, Oh S, Nam SW, Kwon H |
2810 - 2823 |
Analysis of H-2 storage needs for early market "man-portable" fuel cell applications Shaw L, Pratt J, Klebanoff L, Johnson T, Arienti M, Moreno M |
2824 - 2835 |
A novel perspective for hydrogen generation from ammonia borane (NH3BH3) with Co-B catalysts: "Ultrasonic Hydrolysis" Figen AK, Coskuner B |
2836 - 2845 |
Structural and reaction pathway analyses of Mg(BH4)(2)center dot 2NH(3) for hydrogen storage : A first-principles study Yuan PF, Wang F, Sun Q, Jia Y, Guo ZX |
2846 - 2858 |
The effect of electrolyte type on performance of solid oxide fuel cells running on hydrocarbon fuels Ni M |
2859 - 2867 |
Fabrication of electrolyte supported micro-tubular SOFCs using extrusion and dip-coating Hsieh WS, Lin P, Wang SF |
2868 - 2883 |
Anode recirculation behavior of a solid oxide fuel cell system: A safety analysis and a performance optimization Liu M, Lanzini A, Halliop W, Cobas VRM, Verkooijen AHM, Aravind PV |
2884 - 2888 |
Ultrafine amorphous Co-W-B alloy as the anode catalyst for a direct borohydride fuel cell Li S, Yang XD, Zhu HY, Wei XZ, Liu YN |
2889 - 2899 |
Alkyl chain modified sulfonated poly(ether sulfone) for fuel cell applications Krishnan NN, Henkensmeier D, Jang JH, Kim HJ, Ha HY, Nam SW |
2900 - 2907 |
Binary Pt-Pd and ternary Pt-Pd-Ru nanoelectrocatalysts for direct methanol fuel cells Arikan T, Kannan AM, Kadirgan F |
2908 - 2918 |
The role of instabilities on ignition of unsteady hydrogen jets flowing into an oxidizer Maxwell BM, Tawagi P, Radulescu MI |
2919 - 2928 |
A numerical study on a hydrogen assisted diesel engine An H, Yang WM, Maghbouli A, Li J, Chou SK, Chua KJ |
2929 - 2935 |
H-2 sensors based on WO3 thin films activated by platinum nanoparticles synthesized by electroless process Zhang C, Kanta AF, Yin H, Boudiba A, D'Haen J, Olivier MG, Debliquy M |