1 - 8 |
Supercapacitor electrode of nano-Co3O4 decorated with gold nanoparticles via in-situ reduction method Tan Y, Liu Y, Kong L, Kang L, Ran F |
9 - 15 |
Synthesis of highly effective MnO2 coated carbon nanofibers composites as low cost counter electrode for efficient dye-sensitized solar cells Li L, Lu Q, Xiao JY, Li JW, Mi H, Duan RY, Li JB, Zhang WM, Li XW, Liu S, Yang K, Wu MX, Zhang YC |
16 - 19 |
A novel layered perovskite electrode for symmetrical solid oxide fuel cells: PrBa(Fe0.8Sc0.2)(2)O5+delta He W, Wu XL, Dong FF, Ni M |
20 - 26 |
Novel niobium carbide/carbon porous nanotube electrocatalyst supports for proton exchange membrane fuel cell cathodes Nabil Y, Cavaliere S, Harkness IA, Sharman JDB, Jones DJ, Roziere J |
27 - 33 |
Macroporous graphitic carbon foam decorated with polydopamine as a high-performance anode for microbial fuel cell Jiang HM, Yang L, Deng WF, Tan YM, Xie QJ |
34 - 43 |
First prototypes of hybrid potassium-ion capacitor (KIC): An innovative, cost-effective energy storage technology for transportation applications Le Comte A, Reynier Y, Vincens C, Leys C, Azais P |
44 - 53 |
Controlling electrodeposited ultrathin amorphous Fe hydroxides film on V-doped nickel sulfide nanowires as efficient electrocatalyst for water oxidation Shang X, Yan KL, Lu SS, Dong B, Gao WK, Chi JQ, Liu ZZ, Chai YM, Liu CG |
54 - 60 |
Synergistic effect of ionic liquid intercalation and multiwalled carbon nanotube spacers with improved supercapacitor performance Liu XY, Guo JH, Chen JP, Zhang JW, Zhang JW |
61 - 69 |
A direct urea microfluidic fuel cell with flow-through Ni-supported-carbon-nanotube-coated sponge as porous electrode Zhang HM, Wang YF, Wu ZC, Leung DYC |
70 - 77 |
Al2O3 coating on anode surface in lithium ion batteries: Impact on low temperature cycling and safety behavior Friesen A, Hildebrand S, Horsthemke F, Borner M, Klopsch R, Niehoff P, Schappacher FM, Winter M |
78 - 86 |
Crosslinked anion exchange membranes with primary diamine-based crosslinkers for vanadium redox flow battery application Cha MS, Jeong HY, Shin HY, Hong SH, Kim TH, Oh SG, Lee JY, Hong YT |
87 - 94 |
Surface-oxidized cobalt phosphide used as high efficient electrocatalyst in activated carbon air-cathode microbial fuel cell Yang TT, Wang Z, Li KX, Liu Y, Liu D, Wang JJ |
95 - 102 |
Reliability prediction of large fuel cell stack based on structure stress analysis Liu LF, Liu B, Wu CW |
103 - 109 |
Three-dimensional hierarchical C-Co-N/Se derived' from metal-organic framework as superior cathode for Li-Se batteries He JR, Lv WQ, Chen YF, Xiong J, Wen KC, Xu C, Zhang WL, Li YR, Qin W, He WD |
110 - 116 |
High-performance lithium storage based on the synergy of atomic thickness nanosheets of TiO2(B) and ultrafine Co3O4 nanoparticles Mujtaba J, Sun HY, Zhao YY, Xiang GL, Xu SM, Zhu J |
117 - 125 |
Catalyst evaluation for high-purity H-2 production by sorption-enhanced steam-methane reforming coupled to a Ca/Cu process Navarro MV, Lopez JM, Garcia T, Grasa G, Murillo R |
126 - 144 |
Recent advancement of SiOx, based anodes for lithium-ion batteries Chen T, Wu J, Zhang QL, Su X |
145 - 152 |
Grain boundary modification to suppress lithium penetration through garnet-type solid electrolyte Basappa RH, Ito T, Morimura T, Bekarevich R, Mitsuishi K, Yamada H |
153 - 160 |
Reduction of methanol crossover by thin cracked metal barriers at the interface between membrane and electrode in direct methanol fuel cells Kim S, Jang S, Kim SM, Ahn CY, Hwang W, Cho YH, Sung YE, Choi M |
161 - 167 |
Fe3O4/C composite with hollow spheres in porous 3D-nanostructure as anode material for the lithium-ion batteries Yang Z, Su DY, Yang JP, Wang J |
168 - 176 |
The high-temperature and high-humidity storage behaviors and electrochemical degradation mechanism of LiNi0.6Co0.2Mn0.2O2 cathode material for lithium ion batteries Chen ZQ, Wang J, Huang JX, Fu T, Sun GY, Lai SB, Zhou R, Li K, Zhao JB |
177 - 184 |
Efficient carbon dioxide electrolysis with metal nanoparticles loaded La0.75Sr0.25Cr0.5Mn0.5O3-delta cathodes Zhu CL, Hou LX, Li SS, Gan LZ, Xie K |
185 - 192 |
Self-healing atmospheric plasma sprayed Mn1.0Co1.9Fe0.1O4 protective interconnector coatings for solid oxide fuel cells Grunwald N, Sebold D, Sohn YJ, Menzler NH, Vassen R |
193 - 198 |
Lithium metal protection enabled by in-situ olefin polymerization for high-performance secondary lithium sulfur batteries An YL, Zhang Z, Fei HF, Xu XY, Xiong SL, Feng JK, Ci LJ |
199 - 208 |
A synchrotron x-ray diffraction and hard x-ray photoelectron spectroscopy study of Zn negative electrodes at different charge and discharge states of Zn/MnO2 batteries using an ionic liquid-based gel polymer electrolyte Abad J, Santos F, Tafur JP, Urbina A, Roman E, Gonzalez-Martinez JF, Rubio-Zuazo J, Castro GR, Romero AJF |
209 - 217 |
Fast-pulverization enabled simultaneous enhancement on cycling stability and rate capability of C@NiFe2O4 hierarchical fibrous bundle Chen ZR, Zhang Y, Wang XL, Sun WP, Dou SX, Huang X, Shi B |
218 - 226 |
Pulse combustion reactor as a fast and scalable synthetic method for preparation of Li-ion cathode materials Krizan G, Krizan J, Dominko R, Gaberscek M |
227 - 233 |
Effect of wettability-distribution pattern of the gas diffusion layer with a microgrooved separator on polymer electrolyte fuel cell performance Utaka Y, Koresawa R |
234 - 243 |
The role of phosphate additive in stabilization of sulphuric-acid-based vanadium(V) electrolyte for all-vanadium redox-flow batteries Roznyatovskaya NV, Roznyatovsky VA, Hohne CC, Fuhl M, Gerber T, Kuttinger M, Noack J, Fischer P, Pinkwart K, Tubke J |
244 - 250 |
A cathode material based on the iron fluoride with an ultra-thin Li3FeF6 protective layer for high-capacity Li-ion batteries Yang J, Xu ZL, Zhou HC, Tang JJ, Sun HX, Ding J, Zhou XY |
251 - 259 |
High performance novel gadolinium doped ceria/yttria stabilized zirconia/nickel layered and hybrid thin film anodes for application in solid oxide fuel cells Garcia-Garcia FJ, Beltran AM, Yubero E, Gonzalez-Elipe AR, Lambert RM |
260 - 268 |
Co,N-codoped graphene as efficient electrocatalyst for hydrogen evolution reaction: Insight into the active centre Wang SM, Zhang L, Qin Y, Ding D, Bu YF, Chu FQ, Kong Y, Liu ML |
269 - 276 |
Potassium nickel hexacyanoferrate as a high-voltage cathode material for nonaqueous magnesium-ion batteries Chae MS, Hyoung J, Jang M, Lee H, Hong ST |
277 - 283 |
Optimal integration of a hybrid solar-battery power source into smart home nanogrid with plug-in electric vehicle Wu XH, Hu XS, Teng YQ, Qian SD, Cheng R |
284 - 290 |
TiO2 nanorods grown on carbon fiber cloth as binder-free electrode for sodium-ion batteries and flexible sodium-ion capacitors Liu SN, Luo ZG, Tian GY, Zhu MN, Cai ZY, Pan AQ, Liang SQ |
291 - 303 |
Novel thermal management system using boiling cooling for high-powered lithium-ion battery packs for hybrid electric vehicles Al-Zareer M, Dincer I, Rosen MA |
304 - 310 |
Solvent effects on the morphology and performance of the anode substrates for solid oxide fuel cells Liu T, Ren C, Zhang YX, Wang Y, Lei LB, Chen FL |
311 - 316 |
Insights into the buffer effect observed in blended lithium insertion electrodes Heubner C, Liebmann T, Lammel C, Schneider M, Michaelis A |
317 - 326 |
An isopropanol-assisted fabrication strategy of pinhole-free perovskite films in air for efficient and stable planar perovskite solar cells Ren ZQ, Zhu MH, Li X, Dong CK |
327 - 340 |
Performance testing of supercapacitors: Important issues and uncertainties Zhao JY, Gao YH, Burke AE |
341 - 355 |
A genetically optimized kinetic model for ethanol electro-oxidation on Pt-based binary catalysts used in direct ethanol fuel cells Sanchez-Monreal J, Garcia-Salaberri PA, Vera M |
356 - 364 |
N- and O-doped hollow carbonaceous spheres with hierarchical porous structure for potential application in high-performance capacitance Chen Z, Rui C, Ge YH, Tu YF, Xia Y, Yang XM |
365 - 374 |
Investigation of electrolyte leaching in the performance degradation of phosphoric acid-doped polybenzimidazole membrane-based high temperature fuel cells Jeong YH, Oh K, Ahn S, Kim NY, Byeon A, Park HY, Lee SY, Park HS, Yoo SJ, Jang JH, Kim HJ, Ju H, Kim JY |
375 - 383 |
Nitrogen-doped two-dimensional porous carbon sheets derived from clover biomass for high performance supercapacitors Wang CJ, Wu DP, Wang HJ, Gao ZY, Xu F, Jiang K |
384 - 391 |
Separator for lithium-sulfur battery based on polymer blend membrane Freitag A, Stamm M, Ionov L |
392 - 403 |
Facile synthesis of uniform MoO2/Mo2CTX heteromicrospheres as high-performance anode materials for lithium-ion batteries Min J, Wang KY, Liu J, Yao Y, Wang WJ, Yang LY, Zhang RZ, Lei M |
404 - 412 |
High performance red phosphorus electrode in ionic liquid-based electrolyte for Na-ion batteries Dahbi M, Fukunishi M, Horiba T, Yabuuchi N, Yasuno S, Komaba S |
413 - 421 |
V-doped TiO2 supported Pt as a promising oxygen reduction reaction catalyst: Synthesis, characterization and in-situ evaluation in proton exchange membrane fuel cell Bharti A, Cheruvally G |
422 - 427 |
Graphene-based lithium ion capacitor with high gravimetric energy and power densities Ajuria J, Arnaiz M, Botas C, Carriazo D, Mysyk R, Rojo T, Talyzin AV, Goikolea E |
428 - 441 |
Polarization modeling and performance optimization of a molten sodium hydroxide direct carbon fuel cell (MHDCFC) Xing L, Hao JM, Li XF, Zhang Y, Hu ZG, Gao YF |
442 - 449 |
Structural characterization of layered Na0.5Co0.5Mn0.5O2 material as a promising cathode for sodium-ion batteries Manikandan P, Heo S, Kim HW, Jeong HY, Lee E, Kim Y |
450 - 459 |
A-few-second synthesis of silicon nanoparticles by gas-evaporation and their self-supporting electrodes based on carbon nanotube matrix for lithium secondary battery anodes Kowase T, Hori K, Hasegawa K, Momma T, Noda S |
460 - 469 |
New method for binder and carbon black detection at nanometer scale in carbon electrodes for lithium ion batteries Pfaffmann L, Jaiser S, Muller M, Scharfer P, Schabel W, Bauer W, Scheiba F, Ehrenberg H |
470 - 479 |
An insight into the effects of B-site transition metals on the activity, activation effect and stability of perovskite oxygen electrodes for solid oxide electrolysis cells Bi JX, Yang SB, Zhong SH, Wang JQ, Fan C, Chen XB, Liu YH |
480 - 481 |
Comment on 'Novel synthesis of highly durable and active Pt catalyst encapsulated in nitrogen containing carbon for polymer electrolyte membrane fuel cell' Pollet BG |
482 - 482 |
Authors' reply to the comment on 'Novel synthesis of highly durable and active Pt catalyst encapsulated in nitrogen containing carbon for polymer electrolyte membrane fuel cell' Lee H, Sung YE, Choi I, Lim T, Kwon OJ |