1 - 8 |
A comparative study of different binders and their effects on electrochemical properties of LiMn2O4 cathode in lithium ion batteries Zhang Z, Zeng T, Lai YQ, Jia M, Li J |
9 - 19 |
Liquid water quantification in the cathode side gas channels of a proton exchange membrane fuel cell through two-phase flow visualization Banerjee R, Kandlikar SG |
20 - 25 |
Li[Li0.2Mn0.54Ni0.13Co0.13]O-2-MoO3 composite cathodes with low irreversible capacity loss for lithium ion batteries Wu F, Wang Z, Su YF, Yan N, Bao LY, Chen S |
26 - 31 |
Electrochemistry of lithium-oxygen batteries using microelectrode voltammetry Nemanick EJ |
32 - 39 |
MnO2-modified hierarchical graphene fiber electrochemical supercapacitor Chen Q, Meng YN, Hu CG, Zhao Y, Shao HB, Chen N, Qu LT |
40 - 48 |
Influence of cell temperature on sulfur dioxide contamination in proton exchange membrane fuel cells Zhai Y, Bender G, Bethune K, Rocheleau R |
49 - 56 |
High lithium storage capacity and rate capability achieved by mesoporous Co3O4 hierarchical nanobundles Xiao Y, Hu CW, Cao MH |
57 - 69 |
Significant impact on cathode performance of lithium-ion batteries by precisely controlled metal oxide nanocoatings via atomic layer deposition Li XF, Liu J, Meng XB, Tang YJ, Banis MN, Yang JL, Hu YH, Li RY, Cai M, Sun XL |
70 - 77 |
Pd and PdCo alloy nanoparticles supported on polypropylenimine dendrimer-grafted graphene: A highly efficient anodic catalyst for direct formic acid fuel cells Hosseini H, Mahyari M, Bagheri A, Shaabani A |
78 - 83 |
Magnetic sputtered amorphous Si/C multilayer thin films as anode materials for lithium ion batteries Tong YF, Xu Z, Liu C, Zhang GA, Wang J, Wu ZG |
84 - 89 |
Effect of pre-oxidation on the oxidation resistance of spinel-coated Fe-Cr ferritic alloy for solid oxide fuel cell applications Ou DR, Cheng MJ |
90 - 94 |
Carbon nanotube-wired and oxygen-deficient MoO3 nanobelts with enhanced lithium-storage capability Ni JF, Wang GB, Yang J, Gao DL, Chen JT, Gao LJ, Li Y |
95 - 104 |
Hierarchical functional layers on high-capacity lithium-excess cathodes for superior lithium ion batteries Zhao JQ, Aziz S, Wang Y |
105 - 111 |
The potential and challenges of thin-film electrolyte and nanostructured electrode for yttria-stabilized zirconia-base anode-supported solid oxide fuel cells Noh HS, Yoon KJ, Kim BK, Je HJ, Lee HW, Lee JH, Son JW |
112 - 116 |
Compatibility of poly(bisAEA4)-LiTFSI-MPPipTFSI ionic liquid gel polymer electrolyte with Li4Ti5O12 lithium ion battery anode Stepniak I |
117 - 126 |
Synthesis and electrochemical performance of LiV3O8/polythiophene composite as cathode materials for lithium ion batteries Guo HP, Liu L, Shu HB, Yang XK, Yang ZH, Zhou M, Tan JL, Yan ZC, Hu H, Wang XY |
127 - 133 |
Selective separation of nickel and cadmium from sulfate solutions of spent nickel-cadmium batteries using mixtures of D2EHPA and Cyanex 302 Babakhani A, Rashchi F, Zakeri A, Vahidi E |
134 - 141 |
Free-standing and mechanically flexible mats consisting of electrospun carbon nanofibers made from a natural product of alkali lignin as binder-free electrodes for high-performance supercapacitors Lai CL, Zhou ZP, Zhang LF, Wang XX, Zhou QX, Zhao Y, Wang YC, Wu XF, Zhu ZT, Fong H |
142 - 150 |
PtSn/C catalysts for ethanol oxidation: The effect of stabilizers on the morphology and particle distribution Ma YJ, Wang H, Ji S, Linkov V, Wang RF |
151 - 155 |
Syntheses and electrochemical properties of layered Li0.95Na0.05Ni1/3Co1/3Mn1/3O2 and LiNi1/3Co1/3Mn1/3O2 Gong CX, Lv WX, Qu LM, Bankole OE, Li GH, Zhang R, Hu M, Lei LX |
156 - 162 |
Sequential Monte Carlo filter for state estimation of LiFePO4 batteries based on an online updated model Li JH, Barillas JK, Guenther C, Danzer MA |
163 - 169 |
A general approach for MFe2O4 (M = Zn, Co, Ni) nanorods and their high performance as anode materials for lithium ion batteries Wang NN, Xu HY, Chen L, Gu X, Yang J, Qian YT |
170 - 177 |
Improved microstructure and performance of Ni-based anode for intermediate temperature solid oxide fuel cells Hua B, Zhang WY, Li M, Wang X, Chi B, Pu J, Li J |
178 - 183 |
Highly loaded SnO2/mesoporous carbon nanohybrid with well-improved lithium storage capability Chen L, Wu P, Wang H, Ye Y, Xu B, Cao GP, Zhou YM, Lu TH, Yang YS |
184 - 188 |
Fast sodiation/desodiation reactions of electrochemically delithiated olivine LiFePO4 in aerated aqueous NaNO3 solution Vujkovic M, Mentus S |
189 - 196 |
Evaluation of mechanical abuse techniques in lithium ion batteries Lamb J, Orendorff CJ |
197 - 203 |
Mesoporous polyaniline film on ultra-thin graphene sheets for high performance supercapacitors Wang Q, Yan J, Fan ZJ, Wei T, Zhang ML, Jing XY |
204 - 212 |
Activation of electrochemical lithium and sodium storage of nanocrystalline antimony by anchoring on graphene via a facile in situ solvothermal route Zhang YD, Xie J, Zhu TJ, Cao GS, Zhao XB, Zhang SC |
213 - 218 |
Facile synthesis of porous Pt-Pd nanospheres supported on reduced graphene oxide nanosheets for enhanced methanol electrooxidation Li SS, Lv JJ, Hu YY, Zheng JN, Chen JR, Wang AJ, Feng JJ |
219 - 227 |
Optimal microwave-assisted hydrothermal synthesis of nanosized xLi(2)MnO(3)center dot(1-x)LiNi1/3Co1/3Mn1/O2 cathode materials for lithium ion battery Miao XW, Yan Y, Wang CG, Cui LL, Fang JH, Yang G |
228 - 234 |
Effects of carbon brush anode size and loading on microbial fuel cell performance in batch and continuous mode Lanas V, Ahn Y, Logan BE |
235 - 242 |
High figure of merit for electrokinetic energy conversion in Nafion membranes Kilsgaard BS, Haldrup S, Catalano J, Bentien A |
243 - 248 |
Glass coated compressible solid oxide fuel cell seals Rautanen M, Thomann O, Himanen O, Tallgren J, Kiviaho J |
249 - 255 |
Facial synthesis of SnO2 nanoparticle film for efficient fiber-shaped dye-sensitized solar cells Peng M, Cai X, Fu YP, Yu X, Liu SQ, Deng B, Hany K, Zou DC |
256 - 263 |
Passive hydrogen recovery schemes using a vacuum ejector in a proton exchange membrane fuel cell system Hwang JJ |
264 - 272 |
Stabilization of the cubic perovskite in the system La1-xBaxCo1-yFeyO3-delta (0.7 <= x <= 0.9) and its electrochemical performance as cathode materials for intermediate-temperature solid oxide fuel cells Setevich C, Prado F, de Florio DZ, Caneiro A |
273 - 279 |
Increasing the high rate performance of mixed metal phospho-olivine cathodes through collective and cooperative strategies Ding B, Ji G, Ma Y, Xiao PF, Lu L, Lee JY |
280 - 285 |
Single-stage temperature-controllable water gas shift reactor with catalytic nickel plates Park JW, Lee SW, Lee CB, Park JS, Lee DW, Kim SH, Kim SS, Ryi SK |
286 - 293 |
Highly proton-conductive thermally rearranged polybenzoxazole for medium-temperature and low-humidity polymer electrolyte fuel cells Lee CH, Lee YM |
294 - 306 |
4E analysis and multi objective optimization of a micro gas turbine and solid oxide fuel cell hybrid combined heat and power system Sanaye S, Katebi A |
307 - 313 |
A new approach to surface properties of solid electrolyte interphase on a graphite negative electrode Lee SH, You HG, Han KS, Kim J, Jung IH, Song JH |
314 - 321 |
Impedance spectroscopy of the oxide films formed during high temperature oxidation of a cobalt-plated ferritic alloy Velraj S, Zhu JH, Painter AS, Du SW, Li YT |
322 - 326 |
Characterization of pore network structure in catalyst layers of polymer electrolyte fuel cells El Hannach M, Soboleva T, Malek K, Franco AA, Prat M, Pauchet J, Holdcroft S |
327 - 331 |
Carboxymethyl chitosan: A new water soluble binder for Si anode of Li-ion batteries Yue L, Zhang LZ, Zhong HX |
332 - 338 |
Production caused variation in capacity aging trend and correlation to initial cell performance Baumhofer T, Bruhl M, Rothgang S, Sauer DU |
339 - 345 |
Influence of air contaminants on planar, self-breathing hydrogen PEM fuel cells in an outdoor environment Biesdorf J, Zamel N, Kurz T |
346 - 353 |
Air-breathing direct formic acid microfluidic fuel cell with an array of cylinder anodes Zhu X, Zhang B, Ye DD, Li J, Liao Q |
354 - 359 |
Performance degradation studies on an poly 2,5-benzimidazole high-temperature proton exchange membrane fuel cell using an accelerated degradation technique Jung GB, Chen HH, Yan WM |
360 - 364 |
A CO-tolerant PtRu catalyst supported on thiol-functionalized carbon nanotubes for the methanol oxidation reaction Guo L, Chen SG, Li L, Wei ZD |
365 - 376 |
Simulation and analysis of stress in a Li-ion battery with a blended LiMn2O4 and LiNi0.8Co0.15Al0.05O2 cathode Dai YL, Cai L, White RE |
377 - 383 |
Unexpected performance of layered sodium-ion cathode material in ionic liquid-based electrolyte Chagas LG, Buchholz D, Wu LM, Vortmann B, Passerini S |
384 - 390 |
Repetitive hot-press approach for performance enhancement of hydrogen fuel cells Glassman M, Omosebi A, Besser RS |
391 - 395 |
Discharge/charge reaction mechanism of a pyrite-type FeS2 cathode for sodium secondary batteries Kitajou A, Yamaguchi J, Hara S, Okada S |
396 - 401 |
Multilayer super-short carbon nanotube/reduced graphene oxide architecture for enhanced supercapacitor properties Zeng FY, Kuang YF, Zhang NS, Huang ZY, Pan Y, Hou ZH, Zhou HH, Yan CL, Schmidt OG |
402 - 405 |
In operando X-ray diffraction study of Li7MnN4 upon electrochemical Li extraction-insertion: A reversible three-phase mechanism Emery N, Panabiere E, Crosnier O, Bach S, Brousse T, Willmann P, Pereira-Ramos JP |
406 - 411 |
High performance solid-state dye-sensitized solar cells based on poly(acrylonitrile-co-vinyl acetate)/TiO2 nanoparticles redox electrolytes Chen CL, Chang TW, Su SC, Teng HS, Lee YL |
412 - 422 |
Capacity fade of LiNi(1-x-y)CoxAlyO2 cathode for lithium-ion batteries during accelerated calendar and cycle life test. I. Comparison analysis between LiNi(1-x-y)CoxAlyO2 and Li CoO2 cathodes in cylindrical lithium-ion cells during long term storage test Watanabe S, Kinoshita M, Nakura K |
423 - 427 |
Electrochemical synthesis of a three-dimensional porous Sb/Cu2Sb anode for Na-ion batteries Nam DH, Hong KS, Lim SJ, Kwon HS |
428 - 436 |
Ni-B amorphous alloy nanoparticles modified nanoporous Cu toward ethanol oxidation in alkaline medium Zhang SJ, Zheng YX, Yuan LS, Zhao LH |
437 - 443 |
Two-step oxalate approach for the preparation of high performance LiNi0.5Mn1.5O4 cathode material with high voltage Liu ZS, Jiang YM, Zeng XY, Xiao G, Song HY, Liao SJ |
444 - 451 |
Clean and time-effective synthesis of anatase TiO2 nanocrystalline by microwave-assisted solvothermal method for dye-sensitized solar cells Shen PS, Tai YC, Chen P, Wu YC |
452 - 459 |
Controlled Li+ conduction pathway to achieve enhanced ionic conductivity in polymer electrolytes Wang Y, Li B, Ji JY, Zhong WH |
460 - 466 |
On-line equalization for lithium-ion battery packs based on charging cell voltages: Part 2. Fuzzy logic equalization Zheng YJ, Ouyang MG, Lu LG, Li JQ, Han XB, Xu LF |
467 - 474 |
On the analytical approach for modeling photovoltaic systems behavior Cubas J, Pindado S, Victoria M |
475 - 480 |
Analysis of dye-sensitized solar cells with current collecting electrodes using electrochemical impedance spectroscopy, with a finite element method Shitanda I, Inoue K, Hoshi Y, Itagaki M |
481 - 488 |
Computationally-efficient hybrid strategy for mechanistic modeling of fuel cell stacks Sharma AK, Birgersson E, Khor SH |
489 - 496 |
Effects of flow cell design on charge percolation and storage in the carbon slurry electrodes of electrochemical flow capacitors Dennison CR, Beidaghi M, Hatzell KB, Campos JW, Gogotsi Y, Kumbur EC |
497 - 502 |
Lithium deficient mesoporous Li2-xMnSiO4 with significantly improved electrochemical performance Wang HY, Hou TL, Sun D, Huang XB, He HN, Tang YG, Liu YN |
503 - 516 |
Characterizing and modeling mechanical properties and onset of short circuit for three types of lithium-ion pouch cells Sahraei E, Meier J, Wierzbicki T |
517 - 526 |
X-ray absorption measurements on nickel cathode of sodium-beta alumina batteries: Fe-Ni-Cl chemical associations Bowden ME, Alvine KJ, Fulton JL, Lemmon JR, Lu X, Webb-Robertson BJ, Heald SM, Balasubramanian M, Mortensen DR, Seidler GT, Hess NJ |
527 - 533 |
A study of lithium ion batteries cycle aging by thermodynamics techniques Maher K, Yazami R |
534 - 538 |
Mosaic-shaped cathode for highly durable solid oxide fuel cell under thermal stress Joo JH, Jeong J, Kim SY, Yoo CY, Jung DW, Park HJ, Kwak C, Yu JH |
539 - 544 |
Sensorless battery temperature measurements based on electrochemical impedance spectroscopy Raijmakers LHJ, Danilov DL, van Lammeren JPM, Lammers MJG, Notten PHL |
545 - 550 |
Facile synthesis of large-area CeO2/ZnO nanotube arrays for enhanced photocatalytic hydrogen evolution Zeng CH, Xie SL, Yu MH, Yang YY, Lu XH, Tong YX |
551 - 555 |
Hydrometallurgical process for the recovery of high value metals from spent lithium nickel cobalt aluminum oxide based lithium-ion batteries Joulie M, Laucournet R, Billy E |
556 - 561 |
Metal-supported solid oxide fuel cells with impregnated SrFe0.75Mo0.25O3 cathodes Zhou YC, Meng X, Ye XF, Li JL, Wang SR, Zhan ZL |
562 - 571 |
First-principles study on surface structure, thickness and composition dependence of the stability of Pt-skin/Pt3Co oxygen-reduction-reaction catalysts Escano MCS, Kasai H |
572 - 578 |
Durability of nickel-metal hydride (Ni-MH) battery cathode using nickel-aluminum layered double hydroxide/carbon (Ni-Al LDH/C) composite Beleke AB, Higuchi E, Inoue H, Mizuhata M |
579 - 586 |
Performance of non-compartmentalized enzymatic biofuel cell based on buckypaper cathode and ferrocene-containing redox polymer anode Bunte C, Hussein L, Urban GA |
587 - 593 |
Effect of the co-spun anode functional layer on the performance of the direct-methane microtubular solid oxide fuel cells Meng XX, Gong X, Yin YM, Yang NT, Tan XY, Ma ZF |
594 - 604 |
A model of the effects of automatic generation control signal characteristics on energy storage system reliability Campbell T, Bradley TH |
605 - 611 |
Combinatorial discovery of Ni-based binary and ternary catalysts for hydrazine electrooxidation for use in anion exchange membrane fuel cells Sakamoto T, Asazawa K, Sanabria-Chinchilla J, Martinez U, Halevi B, Atanassov P, Strasser P, Tanaka H |
612 - 617 |
Recovery of zinc and manganese from spent batteries by reductive leaching in acidic media Buzatu M, Saceanu S, Petrescu MI, Ghica GV, Buzatu T |
618 - 628 |
Temperature-dependent electrochemical heat generation in a commercial lithium-ion battery Bandhauer TM, Garimella S, Fuller TF |
629 - 635 |
Sulfonated poly(ether ether ketone) membranes containing pendent carboxylic acid groups and their application in vanadium flow battery Chen DJ, Li XF |
636 - 642 |
Microbial fuel cell energy harvesting using synchronous flyback converter Alaraj M, Ren ZJ, Park JD |
643 - 654 |
Analysis and optimization of hybrid electric vehicle thermal management systems Hamut HS, Dincer I, Naterer GF |
655 - 659 |
Air humidity and water pressure effects on the performance of air-cathode microbial fuel cell cathodes Ahn YT, Zhang F, Logan BE |
660 - 666 |
N- and O-doped carbonaceous nanotubes from polypyrrole for potential application in high-performance capacitance Guo CX, Li N, Ji LL, Li YW, Yang XM, Lu Y, Tu YF |
667 - 675 |
Analytical modeling and simulation of electrochemical charge/discharge behavior of Si thin film negative electrodes in Li-ion cells Jagannathan M, Chandran KSR |
676 - 686 |
On-line equalization for lithium-ion battery packs based on charging cell voltages: Part 1. Equalization based on remaining charging capacity estimation Zheng YJ, Ouyang MG, Lu LG, Li JQ, Han XB, Xu LF |
687 - 691 |
Crystal orientation of epitaxial LiCoO2 films grown on SrTiO3 substrates Nishio K, Ohnishi T, Akatsuka K, Takada K |
692 - 702 |
Electrochemical energy storage behavior of Sn/SnO2 double phase nanocomposite anodes produced on the multiwalled carbon nanotube buckypapers for lithium-ion batteries Alaf M, Akbulut H |
703 - 711 |
Copper sulfides for rechargeable lithium batteries: Linking cycling stability to electrolyte composition Jache B, Mogwitz B, Klein F, Adelhelm P |
712 - 720 |
Effect of heat treatment on the activity and stability of carbon supported PtMo alloy electrocatalysts for hydrogen oxidation in proton exchange membrane fuel cells Hassan A, Carreras A, Trincavelli J, Ticianelli EA |
721 - 728 |
Improved electrochemical performance of spinel LiMn2O4 in situ coated with graphene-like membrane Zhuo HT, Wan S, He CX, Zhang QL, Li CH, Gui DY, Zhu CZ, Niu HB, Liu JH |
729 - 737 |
Extraction of battery parameters of the equivalent circuit model using a multi-objective genetic algorithm Brand J, Zhang ZM, Agarwal RK |
738 - 748 |
Modeling of cold start processes and performance optimization for proton exchange membrane fuel cell stacks Zhou YB, Luo YQ, Yu SH, Jiao K |
749 - 755 |
Performance and stability of a liquid anode high-temperature metal-air battery Otaegui L, Rodriguez-Martinez LM, Wang L, Laresgoiti A, Tsukamoto H, Han MH, Tsai CL, Laresgoiti I, Lopez CM, Rojo T |
756 - 769 |
Modeling the performance of an ideal NaBH4-H2O2 direct borohydride fuel cell Stroman RO, Jackson GS |
770 - 777 |
Preparation and characterization of carbon-coated NaVPO4F as cathode material for rechargeable sodium-ion batteries Lu Y, Zhang S, Li Y, Xue LG, Xu GJ, Zhang XW |
778 - 785 |
Enhanced rate performance of molybdenum-doped spinet LiNi0.5Mn1.5O4 cathode materials for lithium ion battery Yi TF, Chen B, Zhu YR, Li XY, Zhu RS |
786 - 793 |
Sequential effect and enhanced conductivity of star-shaped diblock liquid-crystalline copolymers for solid electrolytes Tong YF, Chen L, He XH, Chen YW |
794 - 798 |
Porous hollow LiCoMnO4 microspheres as cathode materials for 5 V lithium ion batteries Hu M, Tian Y, Wei JP, Wang DG, Zhou Z |
799 - 806 |
Membrane divided soluble lead battery utilising a bismuth electrolyte additive Wallis LPJ, Wills RGA |
807 - 812 |
Transfer and assembly of large area TiO2 nanotube arrays onto conductive glass for dye sensitized solar cells Zhang J, Li SQ, Ding H, Li QT, Wang BY, Wang XN, Wang H |
813 - 820 |
Boron-based anion receptors in lithium-ion and metal-air batteries Reddy VP, Blanco M, Bugga R |
821 - 823 |
Building a "smart nail" for penetration tests on Li-ion cells Hatchard TD, Trussler S, Dahn JR |
824 - 830 |
Flexible alpha-MnO2 paper formed by millimeter-long nanowires for supercapacitor electrodes Yao W, Wang J, Li H, Lu Y |
831 - 839 |
Characterization of Ni-YSZ anodes for solid oxide fuel cells fabricated by solution precursor plasma spraying with axial feedstock injection Metcalfe C, Lay-Grindler E, Kesler O |
840 - 844 |
Double liquid electrolyte for primary Mg batteries Du JL, Wang ZJ, Niu YQ, Duan WY, Wu Z |
845 - 851 |
Improved electrochemical performance by doping cathode materials Sr2Fe1.5Mo0.5-xTaxO6-delta (0.0 <= x <= 0.15) for Solid State Fuel Cell Meng JL, Liu XJ, Han L, Bai YJ, Yao CG, Deng XL, Niu XD, Wu XJ, Meng J |
852 - 857 |
Optimising heat treatment environment and atmosphere of electrolytic manganese dioxide for primary Li/MnO2 batteries Dose WM, Donne SW |
858 - 864 |
Compositionally continuously graded cathode layers of (Ba0.5Sr0.5)(Fe0.91Al0.09)O3-delta-Gd0.1Ce0.9O2 by wet powder spraying technique for solid oxide fuel cells Jiang TZ, Wang ZH, Ren BY, Qiao JS, Sun W, Sun KN |
865 - 875 |
A study of tetrabromobisphenol A (TBBA) as a flame retardant additive for Li-ion battery electrolytes Belov DG, Shieh DT |
876 - 882 |
Crystal and magnetic structure of the Bi2RuMnO7 pyrochlore: A potential new cathode for solid oxide fuel cells Martinez-Coronado R, Alonso JA, Cascos V, Fernandez-Diaz MT |
883 - 889 |
Composite anodes based on nanotube titanium oxide from electro-oxidation of Ti metal substrate Pozio A, Carewska M, Mura F, D'Amato R, Falconieri M, De Francesco M, Appetecchi GB |
890 - 895 |
Photo-enhanced activity of Pt and Pt-Ru catalysts towards the electro-oxidation of methanol Arulmani DV, Eastcott JI, Mavilla SG, Easton EB |
896 - 905 |
Fabrication of large-scale nanoporous nickel with a tunable pore size for energy storage Qiu HJ, Kang JL, Liu P, Hirata A, Fujita T, Chen MW |
906 - 914 |
Insights into the co-sensitizer adsorption kinetics for complementary organic dye-sensitized solar cells Lin LY, Yeh MH, Lee CP, Chang J, Baheti A, Vittal R, Thomas KRJ, Ho KC |
915 - 919 |
Fabrication of In2O3@In2S3 core-shell nanocubes for enhanced photoelectrochemical performance Li HH, Chen C, Huang XY, Leng Y, Hou MN, Xiao XG, Bao J, You JL, Zhang WW, Wang YK, Song J, Wang YP, Liu QQ, Hope GA |
920 - 931 |
Spark plasma sintered/synthesized dense and nanostructured materials for solid-state Li-ion batteries: Overview and perspective Kali R, Mukhopadhyay A |
932 - 938 |
Polymer electrolyte fuel cell performance of poly(arylene ether ketone)-graft-crosslinked-poly(sulfonated arylene ether sulfone) Hara R, Endo N, Higa M, Okamoto K, Zhang X, Bi HP, Chen SS, Hu ZX, Chen SW |
939 - 946 |
New fabrication process of long-life dye-sensitized solar cells by in situ gelation of quasi-solid polymer electrolytes Chen KF, Liu CH, Hsieh CK, Lin CL, Huang HK, Tsai CH, Chen FR |
947 - 960 |
A study of gadolinia-doped ceria electrolyte by electrochemical impedance spectroscopy Zhang L, Liu F, Brinkman K, Reifsnider KL, Virkar AV |
961 - 966 |
Accurate determination of battery discharge characteristics - A comparison between two battery temperature control methods Chen KW, Li XG |
967 - 974 |
Sulphonated polyether ether ketone diaphragms used in commercial scale alkaline water electrolysis Otero J, Sese J, Michaus I, Maria MS, Guelbenzu E, Irusta S, Carrilero I, Arruebo M |
975 - 980 |
An all-solid state NASICON sodium battery operating at 200 degrees C Lalere F, Leriche JB, Courty M, Boulineau S, Viallet V, Masquelier C, Seznec V |
981 - 990 |
Analysis of solid electrolyte interface formation reaction and surface deposit of natural graphite negative electrode employing polyacrylic acid as a binder Ui K, Fujii D, Niwata Y, Karouji T, Shibata Y, Kadoma Y, Shimada K, Kumagai N |
991 - 998 |
Improved anode materials for lithium-ion batteries comprise non-covalently bonded graphene and silicon nanoparticles Ye YS, Xie XL, Rick J, Chang FC, Hwang BJ |
999 - 1004 |
Surfactant-free synthesis of graphene-functionalized carbon nanotube film as a catalytic counter electrode in dye-sensitized solar cells Ma J, Zhou L, Li C, Yang JH, Meng T, Zhou HM, Yang MX, Yu F, Chen JH |
1005 - 1010 |
Maximum power point tracking control of direct methanol fuel cells Zhang MB, Yan T, Gu JG |
1011 - 1017 |
Thermal and overcharge abuse analysis of a redox shuttle for overcharge protection of LiFePO4 Lamb J, Orendorff CJ, Amine K, Krumdick G, Zhang ZC, Zhang L, Gozdz AS |
1018 - 1025 |
The effect of thermal gradients on the performance of lithium-ion batteries Troxler Y, Wu B, Marinescu M, Yufit V, Patel Y, Marquis AJ, Brandon NP, Offer GJ |
1026 - 1032 |
Proposal of simple and novel method of capacity fading analysis using pseudo-reference electrode in lithium ion cells: Application to solvent-free lithium ion polymer batteries Shono K, Kobayashi T, Tabuchi M, Ohno Y, Miyashiro H, Kobayashi Y |
1033 - 1039 |
Image based modelling of microstructural heterogeneity in LiFePO4 electrodes for Li-ion batteries Cooper SJ, Eastwood DS, Gelb J, Damblanc G, Brett DJL, Bradley RS, Withers PJ, Lee PD, Marquis AJ, Brandon NP, Shearing PR |
1040 - 1051 |
Cost and performance model for redox flow batteries Viswanathan V, Crawford A, Stephenson D, Kim S, Wang W, Li B, Coffey G, Thomsen E, Graff G, Balducci P, Kintner-Meyer M, Sprenkle V |
1052 - 1052 |
Fabrication of highly porous platinum electrodes for micro-scale applications by pulsed electrodeposition and dealloying (vol 242, pg 255, 2013) Kohler C, Kloke A, Drzyzga A, Zengerle R, Kerzenmacher S |
1053 - 1053 |
Examining temporal and spatial variations of internal temperature in large-format laminated battery with embedded thermocouples (vol 241, pg 536, 2013) Li Z, Zhang JB, Wu B, Huang J, Nie ZH, Sun Y, An FQ, Wu NN |
1054 - 1054 |
Ultrahigh methanol electro-oxidation activity of PtRu nanoparticles prepared on TiO2-embedded carbon nanofiber support (vol 242, pg 280, 2013) Ito Y, Takeuchi T, Tsujiguchi T, Abdelkareem MA, Nakagawa N |
1055 - 1055 |
Design of experiments and principal component analysis as approaches for enhancing performance of gas-diffusional air-breathing bilirubin oxidase cathode (vol 245, pg 389, 2014) Babanova S, Artyushkova K, Ulyanova Y, Singhal S, Atanassov P |