291 - 297 |
Current status and progress of direct borohydride fuel cell technology development Liu BH, Li ZP |
298 - 304 |
Carbon-supported PdM (M = Au and Sn) nanocatalysts for the electrooxidation of ethanol in high pH media He QG, Chen W, Mukerjee S, Chen SW, Laufek F |
305 - 311 |
Conductive performances of solid polymer electrolyte films based on PVB/LiClO4 plasticized by PEG(200), PEG(400) and PEG(600) Li YW, Wang JW, Tang JW, Liu YP, He YD |
312 - 317 |
Effects of niobium and titanium addition and surface treatment on electrical conductivity of 316 stainless steel as bipolar plates for proton-exchange membrane fuel cells Lee SH, Kim JH, Kim MC, Wee DM |
318 - 323 |
Improved corrosion resistance and interfacial contact resistance of 316L stainless-steel for proton exchange membrane fuel cell bipolar plates by chromizing surface treatment Lee SB, Cho KH, Lee WG, Jang H |
324 - 331 |
Performance decay of proton-exchange membrane fuel cells under open circuit conditions induced by membrane decomposition Sugawara S, Maruyama T, Nagahara Y, Kocha SS, Shinohra K, Tsujita K, Mitsushima S, Ota K |
332 - 340 |
A novel inorganic/organic composite membrane tailored by various organic silane coupling agents for use in direct methanol fuel cells Li T, Yang Y |
341 - 347 |
Preparation of nitrated sulfonated poly(ether ether ketone) membranes for reducing methanol permeability in direct methanol fuel cell applications Lin CK, Kuo JF, Chen CY |
348 - 355 |
Characterization of Cu, Ag and Pt added La0.6Sr0.4Co0.2Fe0.8O3-delta and gadolinia-doped ceria as solid oxide fuel cell electrodes by temperature-programmed techniques Huang TJ, Shen XD, Chou CL |
356 - 362 |
Performance studies of solid oxide fuel cell cathodes in the presence of bare and cobalt coated E-brite alloy interconnects Li XG, Lee JW, Popov BN |
363 - 370 |
Preparation of Pt-Ru catalysts on Nafion(Na+)-bonded carbon layer using galvanostatic pulse electrodeposition for proton-exchange membrane fuel cell Ra Y, Lee J, Kim I, Bong S, Kima H |
371 - 377 |
Characterization of perovskite-type cathode, La0.75Sr0.25 Mn0.95-xCox Ni0.05O3+delta (0.1 <= x <= 0.3), for intermediate-temperature solid oxide fuel cells Gupta RK, Choi IJ, Cho YS, Lee HL, Hyun SH |
378 - 386 |
Fabrication and evaluation of membrane electrode assemblies by low-temperature decal methods for direct methanol fuel cells Cho JH, Kim JM, Prabhuram J, Hwang SY, Ahn DJ, Ha HY, Kim SK |
387 - 392 |
Performance of alkaline electrolyte-membrane-based direct ethanol fuel cells Li YS, Zhao TS, Liang ZX |
393 - 399 |
Development of a tubular microbial fuel cell (MFC) employing a membrane electrode assembly cathode Kim JR, Premier GC, Hawkes FR, Dinsdale RM, Guwy AJ |
400 - 402 |
High performance Ni-Sm2O3 cermet anodes for intermediate-temperature solid oxide fuel cells Ding D, Li L, Feng K, Liu ZB, Xia CR |
403 - 406 |
A stable and thin BaCe0.7Nb0.1Gd0.2O3-delta membrane prepared by simple all-solid-state process for SOFC Xie K, Yan RQ, Xu XX, Liu XQ, Meng GY |
407 - 414 |
Optimization design of slotted-interdigitated channel for stamped thin metal bipolar plate in proton exchange membrane fuel cell Hu P, Peng LF, Zhang WG, Lai XM |
415 - 421 |
Regulating methanol feed concentration in direct methanol fuel cells using feedback from voltage measurements Arisetty S, Jacob CA, Prasad AK, Advani SG |
422 - 430 |
Real-time optimization of net power in a fuel cell system O'Rourke J, Arcak M, Ramani M |
431 - 443 |
Two-phase flow and maldistribution in gas channels of a polymer electrolyte fuel cell Basu S, Li J, Wang CY |
444 - 451 |
Visualization and quantification of cathode channel flooding in PEM fuel cells Hussaini IS, Wang CY |
452 - 460 |
On the intrinsic transient capability and limitations of solid oxide fuel cell systems Mueller F, Jabbari F, Brouwer J |
461 - 470 |
Electrokinetic energy conversion efficiency analysis using nanoscale finite-length surface-charged capillaries Chein RY, Liao CC, Chen HJ |
471 - 479 |
Improved performance of air-cathode single-chamber microbial fuel cell for wastewater treatment using microfiltration membranes and multiple sludge inoculation Sun J, Hu YY, Bi Z, Cao YQ |
480 - 486 |
Ln(0.6)Sr(0.4)Co(1-y)Fe(y)O(3-delta) (Ln = La and Nd; y=0 and 0.5) cathodes with thin yttria-stabilized zirconia electrolytes for intermediate temperature solid oxide fuel cells Torres-Garibay C, Kovar D, Manthiram A |
487 - 492 |
Characterization of internal wetting in polymer electrolyte membrane gas diffusion layers Cheung P, Fairweather JD, Schwartz DT |
493 - 499 |
Deactivation/reactivation of a Pd/C catalyst in a direct formic acid fuel cell (DFAFC): Use of array membrane electrode assemblies Yu XW, Pickup PG |
500 - 504 |
Plasma nitrided titanium as a bipolar plate for proton exchange membrane fuel cell Liu J, Chen F, Chen YG, Zhang DM |
505 - 508 |
Hierarchy carbon paper for the gas diffusion layer of proton exchange membrane fuel cells Du CY, Wang BR, Cheng XQ |
509 - 516 |
Performance evaluation of direct methanol fuel cells for portable applications Rashidi R, Dincer I, Naterer GF, Berg P |
517 - 526 |
Cold start dynamics and temperature sliding observer design of an automotive SOFC APU Lin PH, Hong CW |
527 - 534 |
A review: Hydrogen generation from borohydride hydrolysis reaction Liu BH, Li ZP |
535 - 543 |
Numerical study on micro-reformer performance and local transport phenomena of the plate methanol steam micro-reformer Hsueh CY, Chu HS, Yan WM |
544 - 554 |
High pressure autothermal reforming in low oxygen environments Reese MA, Turn SQ, Cui H |
555 - 564 |
Study of the Li-insertion/extraction process in LiFePO4/FePO4 Ramana CV, Mauger A, Gendron F, Julien CM, Zaghib K |
565 - 574 |
Cerium and zinc: Dual-doped LiMn2O4 spinels as cathode material for use in lithium rechargeable batteries Thirunakaran R, Sivashanmugam A, Gopukumar S, Rajalakshmi R |
575 - 580 |
Macroporous poly(vinylidene fluoride) membrane as a separator for lithium-ion batteries with high charge rate capacity Djian D, Alloin F, Martinet S, Lignier H |
581 - 585 |
Understanding the characteristics of high-voltage additives in Li-ion batteries: Solvent effects Han YK, Jung J, Yu S, Lee H |
586 - 590 |
Structural characteristics and electrochemical performance of layered Li[Mn0.5-xCr2xNi0.5-x]O-2 cathode materials Karan NK, Balasubramanian M, Abraham DP, Furczon MM, Pradhan DK, Saavedra-Arias J, Thomas R, Katiyar RS |
591 - 598 |
Plasma-assisted deposition of lithium phosphorus oxynitride films: Substrate bias effects Kim YG, Wadley HNG |
599 - 604 |
Lead-acid batteries for micro- and mild-hybrid applications Valenciano J, Fernandez M, Trinidad F, Sanz L |
605 - 612 |
Application of ionic liquids as an electrolyte additive on the electrochemical behavior of lead acid battery Rezaei B, Mallakpour S, Taki M |
613 - 619 |
Estimation of the lifetimes of valve-regulated lead-acid batteries Tsujikawa T, Matsushima T, Yabuta K, Matsushita T |
620 - 626 |
Triphenylamine-based organic dye containing the diphenylvinyl and rhodanine-3-acetic acid moieties for efficient dye-sensitized solar cells Pei J, Peng SJ, Shi JF, Liang YL, Tao ZL, Liang J, Chen J |
627 - 634 |
Experimental investigations of an ionic-liquid-based, magnesium ion conducting, polymer gel electrolyte Pandey GP, Hashmi SA |
635 - 639 |
A high rate, high capacity and long life (LiMn2O4 + AC)/Li4Ti5O12 hybrid battery-supercapacitor Hu XB, Deng ZH, Suo JS, Pan ZL |
640 - 643 |
An asymmetric anthraquinone-modified carbon/ruthenium oxide supercapacitor Algharaibeh Z, Liu XR, Pickup PG |