12595 - 12595 |
New developments in fuel cells: From traditional to innovative concepts (Preface for China-Europe forum for advanced fuel cell and new energy) Zhu B, Lund PD |
12596 - 12602 |
Three dimension (3D) hierarchical electrode (Au/rGO/CoPt3) for electrooxidation of ethanol in fuel cells Huang K, Peng DD, Zhang B, Cao X, Hao SJ, Yang G, Dong YB, Wu JS, Huang YZ |
12603 - 12609 |
Preparation and properties of PrBa0.5Sr0.5Co1.5Fe0.5O5+delta as novel oxygen electrode for reversible solid oxide electrochemical cell Tian YF, Li J, Liu YY, Yang JJ, Liu B, Jia LC, Jiang JH, Chi B, Pu J, Li J |
12610 - 12617 |
Carbon-coated molybdenum carbide nanosheets derived from molybdenum disulfide for hydrogen evolution reaction Huang YJ, Wang CS, Song HB, Bao YQ, Lei XQ |
12618 - 12626 |
An experimental investigation on biogases production from Chinese herb residues based on dual circulating fluidized bed Guan HB, Fan XX, Zhao BF, Yang LG, Sun RF, Li CH, Yan BB |
12627 - 12636 |
The synthesis of ZnO/SrTiO3 composite for high-efficiency photocatalytic hydrogen and electricity conversion Wu Y, Dong B, Zhang L, Song HB, Yan CJ |
12637 - 12645 |
Readily fabricated NiCo alloy-metal oxide-carbon black hybrid catalysts for the oxygen reduction reactions in the alkaline media Li FJ, Yin Y, Li WJ, He CX, Zhang QL, Liu JH, Fan LD |
12646 - 12652 |
Enhanced efficiency of hematite photoanode for water splitting with the doping of Ge Zhao L, Xiao JR, Huang HL, Huang QY, Zhao YC, Li YD |
12653 - 12660 |
Rod-like nonstoichiometric Ni0.85Se as efficient electrocatalysts for hydrogen evolution reaction Zhao WJ, Li MY, Wu HM, Feng CQ, Zhang GX |
12661 - 12670 |
Heteroatom (B, N and P) doped porous graphene foams for efficient oxygen reduction reaction electrocatalysis Dong F, Cai YX, Liu C, Liu JY, Qiao JL |
12671 - 12679 |
Vapor-liquid equilibria for low temperature CH4/H-2 mixture Lin WS, Hu MF, Gu AZ |
12680 - 12687 |
Hydrogen and LNG production from coke oven gas with multi-stage helium expansion refrigeration Xu JX, Lin WS, Xu SL |
12688 - 12696 |
7-ethylindole: A new efficient liquid organic hydrogen carrier with fast kinetics Chen ZW, Yang M, Zhu T, Zhang ZL, Chen XD, Liu ZJ, Dong Y, Cheng GE, Cheng HS |
12697 - 12704 |
High-performance SOFC based on a novel semiconductor-ionic SrFeO3-delta-Ce0.8Sm0.2O2-delta membrane Meng YJ, Wang XY, Xia C, Wang BY, Dong WJ, Ji Y, Zhu B |
12705 - 12712 |
The investigation of Ag & LaCo0.6Ni0.4O3-delta composites as cathode contact material for intermediate temperature solid oxide fuel cells Yang JJ, Li Z, Yan D, Pu J, Chi B, Li J |
12713 - 12719 |
High performance cathode-unsintered solid oxide fuel cell enhanced by porous Bi1.6Er0.4O3 (ESB) interlayer Duan NQ, Ma JY, Li J, Yan D, Chi B, Pu J, Li J |
12720 - 12729 |
The structure and magnetic properties of magnesium-substituted LaFeO3 perovskite negative electrode material by citrate sol-gel Lin Q, Yang XX, Lin JP, Guo ZP, He Y |
12730 - 12738 |
Improvement in stability of PtRu electrocatalyst by carbonization of in-situ polymerized polyaniline Zhang Q, Yang ZH, Ling Y, Yu XX, Zhang YF, Cheng HS |
12739 - 12747 |
The composite electrolyte with an insulation Sm2O3 and semiconductor NiO for advanced fuel cells Liu L, Liu YY, Li LY, Wu Y, Singh M, Zhu B |
12748 - 12755 |
Coking-resistant NbOx-Ni-Ce0.8Sm0.2O1.9 anode material for methanol-fueled solid oxide fuel cells Yao XL, Fan LJ, Gan T, Hou NJ, Li P, Zhao YC, Li YD |
12756 - 12764 |
Experimental and physical approaches on a novel semiconducting-ionic membrane fuel cell Mi YQ, Xia C, Zhu B, Raza R, Afzal M, Riess I |
12765 - 12772 |
Electrochemical performance of a new structured low temperature SOFC with BZY electrolyte Chen G, Luo YD, Sun WK, Liu HL, Ding YS, Li Y, Geng SJ, Yu K, Liu GQ |
12773 - 12781 |
Study on charge transportation in the layer-structured oxide composite of SOFCs Liu XQ, Dong WJ, Xia C, Huang Q, Cai YX, Wei LL, Wu GT, Wang XY, Tong YZ, Qiao Z, Meng YJ, Mushtaq N, Wang BY, Wang H |
12782 - 12788 |
Plasma sprayed coatings for low-temperature SOFC and high temperature effects on Li-x(Ni,Co)(y)O-2 catalyst layers Yuan K, Yu YG, Wu Y, Ji XJ, Xu ZY, Shen J |
12789 - 12796 |
The heterogeneous electrolyte of CuFeO2 nano-flakes composited with flower-shaped ZnO for advanced solid oxide fuel cells Zhang J, Song HB, Xu R, Yan CJ, Wu Y |
12797 - 12802 |
High performance ceramic nanocomposite fuel cells utilizing LiNiCuZn-oxide anode based on slurry method Asghar MI, Jouttijarui S, Lund PD |
12803 - 12810 |
High electrocatalytic performance of a graphene-supported PtAu nanoalloy for methanol oxidation Chang G, Cai ZW, Jia HM, Zhang ZL, Liu X, Liu ZH, Zhu RZ, He YB |
12811 - 12816 |
Electrodeposited Ni/CeO2 mulriple coating on SUS 430 steel interconnect Li YD, Geng SJ, Chen G |
12817 - 12824 |
Single-phase electronic-ionic conducting Sm3+/Pr3+/Nd3+ triple-doped ceria for new generation fuel cell technology Liu YY, Mushtaq MN, Zhang W, Teng AJ, Liu XQ |
12825 - 12834 |
Semiconductor electrolyte for low-operating-temperature solid oxide fuel cell: Li-doped ZnO Xia C, Qiao Z, Shen LP, Liu XQ, Cai YX, Xu Y, Qiao JL, Wang H |
12835 - 12846 |
Fabrication of integrated BZY electrolyte matrices for protonic ceramic membrane fuel cells by tape-casting and solid-state reactive sintering Huang JB, Ma Y, Cheng M, Ruan SS |
12847 - 12855 |
Advance fuel cells using Al2O3-nNaAlO(2) composite as ion-conducting membrane Wang BY, Chen SS, Dong WJ, Wang XY, Shen LP, Wang H |
12856 - 12869 |
On dynamic operation modes of fuel cell: A comparison between the single-loop and multi-loop controls Fu H, Sun L, Shen J, Lee KY |
12870 - 12891 |
Solid oxide fuel cell technology for sustainable development in China: An over-view Lu YZ, Cai YX, Souamy L, Song X, Zhang L, Wang J |
12892 - 12899 |
Remarkable ionic conductivity and catalytic activity in ceramic nanocomposite fuel cells Asghar MI, Jouttijarvi S, Jokiranta R, Lund PD |
12900 - 12908 |
Electrochemical study of composite materials for coal-based direct carbon fuel cell Ali A, Bashir FS, Raza R, Rafique A, Ullah MK, Alvi F, Afzal M, Ghauri M, Belova LM |
12909 - 12916 |
Electrical properties of nanocube CeO2 in advanced solid oxide fuel cells Li LY, Zhu B, Zhang J, Yan CJ, Wu Y |