1 - 7 |
Comparative characterization of thermodynamic, electrical, and electrochemical properties of Sm0.5Sr0.5Co1-xNbxO3-delta (x=0, 0.05, and 0.1) as cathode materials in intermediate temperature solid oxide fuel cells Yoo S, Lim TH, Shin J, Kim G |
8 - 15 |
A novel TiO2 nanowires/nanoparticles composite photoanode with SrO shell coating for high performance dye-sensitized solar cell Hu Q, Wu CC, Cao LQ, Chi B, Pu J, Jian L |
16 - 19 |
Immersed effects of Ta and Zr compounds on activity of oxygen reduction reaction in sulfuric acid Matsuzawa K, Nozawa K, Yamauchi K, Ishihara A, Mitsushima S, Ota K |
20 - 26 |
Enhanced electrochemical performances of LiFePO4/C by surface modification with Sn nanoparticles Lin YB, Lin Y, Zhou T, Zhao GY, Huang YD, Huang ZG |
27 - 32 |
An electrodeposited redox polymer-laccase composite film for highly efficient four-electron oxygen reduction Shen W, Deng HM, Teo AKL, Gao ZQ |
33 - 41 |
LiFePO4 battery pack capacity estimation for electric vehicles based on charging cell voltage curve transformation Zheng YJ, Lu LG, Han XB, Li JQ, Ouyang MG |
42 - 46 |
Resonant photoemission spectroscopy of the cathode material LixMn0.5Fe0.5PO4 for lithium-ion battery Kurosumi S, Horiba K, Nagamura N, Toyoda S, Kumigashira H, Oshima M, Furutsuki S, Nishimura S, Yamada A, Mizuno N |
47 - 53 |
An upconversion NaYF4:Yb3+,Er3+/TiO2 core-shell nanoparticle photoelectrode for improved efficiencies of dye-sensitized solar cells Zhang J, Shen HO, Guo W, Wang SH, Zhu CT, Xue F, Hou JF, Su HQ, Yuan ZB |
54 - 60 |
High performance ceramic-coated separators prepared with lithium ion-containing SiO2 particles for lithium-ion batteries Shin WK, Kim DW |
61 - 64 |
All-solid-state lithium battery with LiBH4 solid electrolyte Takahashi K, Hattori K, Yamazaki T, Takada K, Matsuo M, Orimo S, Maekawa H, Takamura H |
65 - 70 |
A reduced graphene oxide/Co3O4 composite for supercapacitor electrode Xiang CC, Li M, Zhi MJ, Manivannan A, Wu NQ |
71 - 74 |
Ball-milling assisted solid-state reaction synthesis of mesoporous Li4Ti5O12 for lithium-ion batteries anode Lai C, Wu ZZ, Zhu YX, Wu QD, Li L, Wang C |
75 - 81 |
Lithium storage in carbon-coated SnO2 by conversion reaction Guo XW, Fang XP, Sun Y, Shen LY, Wang ZX, Chen LQ |
82 - 86 |
Electrospun polyimide nanofiber-based nonwoven separators for lithium-ion batteries Miao YE, Zhu GN, Hou HQ, Xia YY, Liu TX |
87 - 93 |
Characteristics of high-water-uptake activated carbon/Nafion hybrid membranes for proton exchange membrane fuel cells Chien HC, Tsai LD, Lai CM, Lin JN, Zhu CY, Chang FC |
94 - 100 |
Verification of necessity of one-dimensional titania nanoscale materials for dye-sensitized solar cells Adachi M, Tanino R, Adachi J, Mori Y, Tsuchiya K, Isoda S, Uchida F |
101 - 106 |
Polyethylene-supported polyvinylidene fluoride-cellulose acetate butyrate blended polymer electrolyte for lithium ion battery Liu JS, Li WS, Zuo XX, Liu SQ, Li Z |
107 - 111 |
Synthesis and electrochemical properties of MoO3/C composite as anode material for lithium-ion batteries Xia Q, Zhao HL, Du ZH, Wang J, Zhang TH, Wang J, Lv PP |
112 - 121 |
Optimization of ink composition based on a non-platinum cathode for single membrane electrode assembly proton exchange membrane fuel cells Artyushkova K, Habel-Rodriguez D, Olson TS, Atanassov P |
122 - 126 |
Analysis of the size effect of LiMnPO4 particles on the battery properties by using STEM-EELS Yoshida J, Stark M, Holzbock J, Husing N, Nakanishi S, Iba H, Abe H, Naito M |
127 - 133 |
Optimization of Al2O3-glass composite seals for planar intermediate-temperature solid oxide fuel cells Wang XP, Yan D, Fang DW, Luo J, Pu J, Chi B, Jian L |
134 - 139 |
Water soluble binder for fabrication of Li4Ti5O12 electrodes Pohjalainen E, Rasanen S, Jokinen M, Yliniemi K, Worsley DA, Kuusivaara J, Juurikivi J, Ekqvist R, Kallio T, Karppinen M |
140 - 148 |
Facile synthesis of porous LiMn2O4 spheres as cathode materials for high-power lithium ion batteries Wang YZ, Shao X, Xu HY, Xie M, Deng SX, Wang H, Liu JB, Yan H |
149 - 155 |
Ion transport restriction in mechanically strained separator membranes Cannarella J, Arnold CB |
156 - 161 |
Effects of acidity and alkalinity on corrosion behaviour of Al-Zn-Mg based anode alloy Ma JL, Wen JB, Li QN, Zhang Q |
162 - 172 |
Ni/YSZ pattern anodes fabrication and their microstructure and electrochemical behavior changes in H-2-H2O environments Yao W, Croiset E |
173 - 178 |
Photovoltaic performance degradation and recovery of the flexible dye-sensitized solar cells by bending and relaxing He XL, Liu M, Yang GJ, Yao HL, Fan SQ, Li CJ |
179 - 185 |
Polyelectrolyte based on tetra-sulfonated poly(arylene ether)s for direct methanol fuel cell Pang JH, Shen KZ, Ren DF, Feng SN, Jiang ZH |
186 - 190 |
Lattice orientation control of lithium cobalt oxide cathode film for all-solid-state thin film batteries Yoon Y, Park C, Kim J, Shin D |
191 - 201 |
Evaluation of UltraBattery (TM) performance in comparison with a battery-supercapacitor parallel network Fairweather AJ, Stone DA, Foster MP |
202 - 209 |
The effects of electrolyte on the supercapacitive performance of activated calcium carbide-derived carbon Wu H, Wang XY, Jiang LL, Wu C, Zhao QL, Liu X, Hu BA, Yi LH |
210 - 218 |
Properties and application of ether-functionalized trialkylimidazolium ionic liquid electrolytes for lithium battery Jin YD, Fang SH, Chai M, Yang L, Tachibana K, Hirano S |
219 - 222 |
Electrochemical performance of LiCo1/3Mn1/3Ni1/3O2 hollow spheres as cathode material for lithium ion batteries Yang CF, Huang JJ, Huang LG, Wang GJ |
223 - 240 |
Review and advances of direct methanol fuel cells (DMFCs) part I: Design, fabrication, and testing with high concentration methanol solutions Li XL, Faghri A |
241 - 248 |
High-performance Sn@carbon nanocomposite anode for lithium batteries Meschini I, Nobili F, Mancini M, Marassi R, Tossici R, Savoini A, Focarete ML, Croce F |
249 - 255 |
Design of a new lithium ion battery test cell for in-situ neutron diffraction measurements Roberts M, Biendicho JJ, Hull S, Beran P, Gustafsson T, Svensson G, Edstrom K |
256 - 265 |
High temperature stabilization of lithium-sulfur cells with carbon nanotube current collector Kim H, Lee JT, Yushin G |
266 - 271 |
Performance of H-shaped membraneless micro fuel cells Park HB, Lee KH, Sung HJ |
272 - 288 |
A review on the key issues for lithium-ion battery management in electric vehicles Lu LG, Han XB, Li JQ, Hua JF, Ouyang MG |
289 - 298 |
Semi-interpenetrating polymer network proton exchange membranes with narrow and well-connected hydrophilic channels Fang CL, Toh XN, Yao QF, Julius D, Hong L, Lee JY |
299 - 305 |
The testing of batteries linked to supercapacitors with electrochemical impedance spectroscopy: A comparison between Li-ion and valve regulated lead acid batteries Ferg E, Rossouw C, Loyson P |
306 - 312 |
An electrocatalytic oxygen reduction by copper nanoparticles-modified Au(100)-rich polycrystalline gold electrode in 0.5 M KOH Awad MI, Ohsaka T |
313 - 319 |
In-situ X-ray diffraction studies of lithium-sulfur batteries Canas NA, Wolf S, Wagner N, Friedrich KA |
320 - 328 |
Polymer electrolyte membrane fuel cell performance degradation by coolant leakage and recovery Jung JH, Kim SH, Hur SH, Joo SH, Choi WM, Kim J |
329 - 333 |
Poly(ethylenglycol)dimethylether-lithium bis(trifluoromethanesulfonyl)imide, PEG500DME-LiTFSI, as high viscosity electrolyte for lithium ion batteries Bernhard R, Latini A, Panero S, Scrosati B, Hassoun J |
334 - 339 |
Enhanced electrical conductivity of La2Mo1.4W0.6O9 ceramic prepared by laser rapid solidification method Yu JM, Chao MJ, Li DC, Li MY |
340 - 345 |
Fabrication and electrochemical properties of LiMn2O4/SrRuO3 multi-layer epitaxial thin film electrodes Suzuki K, Kim K, Taminato S, Hirayama M, Kanno R |
346 - 353 |
Highly durable polymer electrolyte membranes at elevated temperature: Cross-linked copolymer structure consisting of poly(benzoxazine) and poly(benzimidazole) Kim SK, Kim KH, Park JO, Kim K, Ko T, Choi SW, Pak C, Chang H, Lee JC |
354 - 358 |
High performance of La0.6Sr0.4Co0.2Fe0.8O3-Ce0.9Gd0.1O1.95 nanoparticulate cathode for intermediate temperature microtubular solid oxide fuel cells Sumi H, Yamaguchi T, Hamamoto K, Suzuki T, Fujishiro Y |
359 - 362 |
Low-cost porous Cu2ZnSnSe4 film remarkably superior to noble Pt as counter electrode in quantum dot-sensitized solar cell system Zeng XW, Zhang WJ, Xie Y, Xiong DH, Chen W, Xu XB, Wang MK, Cheng YB |
363 - 364 |
Comment on the paper "Effect of stress on dissolution/precipitation of platinum: Implications concerning core-shell catalysts and cathode degradation in proton exchange membrane fuel cells" by Preethy Parthasarathy, Anil V. Virkar [J. Power Sources 196 (2011) 9204-9212] Horvath A, Schiller R |