1 - 7 |
Ultrafast Li-storage of MoS2 nanosheets grown on metal-organic framework-derived microporous nitrogen-doped carbon dodecahedrons Shao J, Gao T, Qu QT, Shi Q, Zuo ZC, Zheng HH |
8 - 16 |
Microbial fuel cells with highly active aerobic biocathodes Milner EM, Popescu D, Curtis T, Head IM, Scott K, Yu EH |
17 - 25 |
Insight into self-discharge of layered lithium-rich oxide cathode in carbonate-based electrolytes with and without additive Li JH, Xing LD, Zhang LP, Yu L, Fan WZ, Xu MQ, Li WS |
26 - 32 |
Metal-based anode for high performance bioelectrochemical systems through photo-electrochemical interaction Liang YX, Feng HJ, Shen DS, Long YY, Li N, Zhou YY, Ying XB, Gu Y, Wang YF |
33 - 40 |
Synthesis of nano-sized silicon from natural halloysite clay and its high performance as anode for lithium-ion batteries Zhou XY, Wu LL, Yang J, Tang JJ, Xi LH, Wang B |
41 - 44 |
Nucleation and electrolytic deposition of lead on model carbon electrodes Cericola D, Spahr M |
45 - 51 |
Structural stabilization on SiOx film anode with large areal capacity for enhanced cyclability in lithium-ion batteries Takezawa H, Ito S, Yoshizawa H, Abe T |
52 - 60 |
Construction of a cathode using amorphous FePO4 nanoparticles for a high-power/energy-density lithium-ion battery with long-term stability Zhang TB, Cheng XB, Zhang Q, Lu YC, Luo GS |
61 - 69 |
Design and use of multisine signals for Li-ion battery equivalent circuit modelling. Part 2: Model estimation Widanage WD, Barai A, Chouchelamane GH, Uddin K, McGordon A, Marco J, Jennings P |
70 - 78 |
Design and use of multisine signals for Li-ion battery equivalent circuit modelling. Part 1: Signal design Widanage WD, Barai A, Chouchelamane GH, Uddin K, McGordon A, Marco J, Jennings P |
79 - 85 |
Optimization of membrane stack configuration in enlarged microbial desalination cells for efficient water desalination Chen X, Sun HT, Liang P, Zhang XY, Huang X |
86 - 96 |
Novel one-step synthesis of wool-ball-like Ni-carbon nanotubes composite cathodes with favorable electrocatalytic activity for hydrogen evolution reaction in alkaline solution Chen ZH, Ma ZP, Song JJ, Wang LX, Shao GJ |
97 - 105 |
Fabrication and performance of electrochemically grafted thiophene silicon nanoparticle anodes for Li-ion batteries Abdelhamid ME, Snook GA, Gaubicher J, Lestriez B, Moreau P, Guyomard D, O'Mullane AP |
106 - 112 |
Effect of nickel and iron on structural and electrochemical properties of O3 type layer cathode materials for sodium-ion batteries Hwang JY, Myung ST, Aurbach D, Sun YK |
113 - 125 |
Microfluidic microbial fuel cells: from membrane to membrane free Yang Y, Ye DD, Li J, Zhu X, Liao Q, Zhang B |
126 - 133 |
In-situ, non-destructive acoustic characterization of solid state electrolyte cells Schmidt RD, Sakamoto J |
134 - 141 |
High porosity and surface area self-doped carbon derived from polyacrylonitrile as efficient electrocatalyst towards oxygen reduction You CH, Zheng RP, Shu T, Liu LN, Liao SJ |
142 - 149 |
Solution-processed flexible planar perovskite solar cells: A strategy to enhance efficiency by controlling the ZnO electron transfer layer, PbI2 phase, and CH3NH3PbI3 morphologies Jung K, Lee J, Kim J, Chae WS, Lee MJ |
150 - 157 |
A new strategy to mitigate the initial capacity loss of lithium ion batteries Su X, Lin CK, Wang XP, Maroni VA, Ren Y, Johnson CS, Lu WQ |
158 - 169 |
On-board capacity estimation of lithium iron phosphate batteries by means of half-cell curves Marongiu A, Nlandi N, Rong Y, Sauer DU |
170 - 178 |
Coupling of exothermic and endothermic hydrogen storage materials Brooks KP, Bowden ME, Karkamkar AJ, Houghton AY, Autrey ST |
179 - 187 |
Electrochemical performance enhancement in MnCo2O4 nanoflake/graphene nanoplatelets composite Al-Rubaye S, Rajagopalan R, Subramaniyam CM, Yu ZY, Dou SX, Cheng ZX |
188 - 198 |
Efficiently dense hierarchical graphene based aerogel electrode for supercapacitors Wang X, Lu CX, Peng HF, Zhang X, Wang ZK, Wang GK |
199 - 207 |
TiN@nitrogen-doped carbon supported Pt nanoparticles as high-performance anode catalyst for methanol electrooxidation Zhang J, Ma L, Gan MY, Fu SN, Zhao Y |
208 - 214 |
Membraneless enzymatic ethanol/O-2 fuel cell: Transitioning from an air-breathing Pt-based cathode to a bilirubin oxidase-based biocathode Neto SA, Milton RD, Hickey DP, De Andrade AR, Minteer SD |
215 - 223 |
Improved electrochemical performance for vanadium flow battery by optimizing the concentration of the electrolyte Jing MH, Wei ZF, Su W, He HX, Fan XZ, Qin Y, Liu JG, Yan CW |
224 - 232 |
Ca and In co-doped BaFeO3-delta as a cobalt-free cathode material for intermediate-temperature solid oxide fuel cells Wang J, Lam KY, Saccoccio M, Gao Y, Chen DJ, Ciucci F |
233 - 238 |
Mesoporous nitrogen-doped carbon hollow spheres as high-performance anodes for lithium-ion batteries Huo KF, An WL, Fu JJ, Gao B, Wang L, Peng X, Cheng GJ, Chu PK |
239 - 252 |
Hybrid nanostructured microporous carbon-mesoporous carbon doped titanium dioxide/sulfur composite positive electrode materials for rechargeable lithium-sulfur batteries Zegeye TA, Kuo CFJ, Wotango AS, Pan CJ, Chen HM, Haregewoin AM, Cheng JH, Su WN, Hwang BJ |
253 - 260 |
Highly efficient photocatalytic hydrogen evolution from nickel quinolinethiolate complexes under visible light irradiation Rao H, Yu WQ, Zheng HQ, Bonin J, Fan YT, Hou HW |
261 - 271 |
Modeling mass transfer in solid oxide fuel cell anode: II. H-2/CO co-oxidation and surface diffusion in synthesis-gas operation Bao C, Jiang ZY, Zhang XX |
272 - 281 |
Low-cost flexible supercapacitors based on laser reduced graphene oxide supported on polyethylene terephthalate substrate Ghoniem E, Mori S, Abdel-Moniem A |
282 - 287 |
In situ Raman spectroscopic analysis of the coking resistance mechanism on SrZr0.95Y0.05O3-x surface for solid oxide fuel cell anodes Nagasawa T, Chen DC, Lai SY, Liu ML, Hanamura K |
288 - 293 |
Stainless steel-supported solid oxide fuel cell with La0.2Sr0.8Ti0.9Ni0.1O3-delta/yttria-stabilized zirconia composite anode Dayaghi AM, Kim KJ, Kim S, Park J, Kim SJ, Park BH, Choi GM |
294 - 301 |
In situ fabrication of three-dimensional nitrogen and boron co-doped porous carbon nanofibers for high performance lithium-ion batteries Zhang LJ, Xia GL, Guo ZP, Sun DL, Li XG, Yu XB |
302 - 308 |
High-performance supercapacitor electrode from cellulose-derived, inter-bonded carbon nanofibers Cai J, Niu HT, Wang HX, Shao H, Fang J, He JR, Xiong HG, Ma CJ, Lin T |
309 - 316 |
Edge effects in vertically-oriented graphene based electric double-layer capacitors Yang HC, Yang JY, Bo Z, Zhang S, Yan JH, Cen KF |
317 - 324 |
Pt loaded two-dimensional TaC-nanosheet/graphene hybrid as an efficient and durable electrocatalyst for direct methanol fuel cells He CY, Tao JZ |
325 - 333 |
Flexible coaxial-type fiber solid-state asymmetrical supercapacitor based on Ni3S2 nanorod array and pen ink electrodes Wen J, Li SZ, Zhou K, Song ZC, Li BR, Chen Z, Chen T, Guo YX, Fang GJ |
334 - 341 |
Cooperative redox-active additives of anthraquinone-2,7-disulphonate and K4Fe(CN)(6) for enhanced performance of active carbon-based capacitors Tian Y, Liu M, Che RX, Xue R, Huang LP |
342 - 348 |
Effects of cathode electrolyte interfacial (CEI) layer on long term cycling of all-solid-state thin-film batteries Wang ZY, Lee JZ, Xin HLL, Han LL, Grillon N, Guy-Bouyssou D, Bouyssou E, Proust M, Meng YS |
349 - 357 |
Achieving high capacity in bulk-type solid-state lithium ion battery based on Li6.75La3Zr1.75Ta0.25O12 electrolyte: Interfacial resistance Liu T, Ren YY, Shen Y, Zhao SX, Lin YH, Nan CW |
358 - 367 |
Relating the 3D electrode morphology to Li-ion battery performance; a case for LiFePO4 Liu Z, Verhallen TW, Singh DP, Wang HQ, Wagemaker M, Barnett S |
368 - 377 |
Facile electrochemical polymerization of polypyrrole film applied as cathode material in dual rotating disk photo fuel cell Li K, Zhang HB, Tang TT, Tang YP, Wang YL, Jia JP |
378 - 387 |
Towards environmentally friendly Na-ion batteries: Moisture and water stability of Na2Ti3O7 Zarrabeitia M, Castillo-Martinez E, Del Amo JML, Eguia-Barrio A, Munoz-Marquez MA, Rojo T, Casas-Cabanas M |
388 - 401 |
Experimental analysis of Hybridised Energy Storage Systems for automotive applications Sarwar W, Engstrom T, Marinescu M, Green N, Taylor N, Offer GJ |
402 - 411 |
Flow field design and optimization based on, the mass transport polarization regulation in a flow-through type vanadium flow battery Zheng Q, Xing F, Li XF, Ning GL, Zhang HM |
412 - 420 |
Synthesis of silver/nitrogen-doped reduced graphene oxide through a one-step thermal solid-state reaction for oxygen reduction in an alkaline medium Soo LT, Loh KS, Mohamad A, Daud WRW, Wong WY |
421 - 427 |
Na3V2O2(PO4)(2)F-MWCNT nanocomposites as a stable and high rate cathode for aqueous and non-aqueous sodium-ion batteries Kumar PR, Jung YH, Wang JE, Kim DK |
428 - 438 |
Improved electrochemical reversibility of over-lithiated layered Li2RuO3 cathodes: Understanding aliovalent Co3+ substitution with excess lithium Arunkumar P, Jeong WJ, Won S, Im WB |
439 - 446 |
Thin films of pure vanadium nitride: Evidence for anomalous non-faradaic capacitance Bondarchuk O, Morel A, Belanger D, Goikolea E, Brousse T, Mysyk R |
447 - 454 |
Synergistic effect of the core-shell structured Sn/SnO2/C ternary anode system with the improved sodium storage performance Cheng YY, Huang JF, Li JY, Xu ZW, Cao LY, Qi H |
455 - 461 |
On the dispersion of lithium-sulfur battery cathode materials effected by electrostatic and stereo-chemical factors of binders Hong XH, Jin J, Wen ZY, Zhang SP, Wang QS, Shen C, Rui K |
462 - 474 |
A comparative study on electrochemical cycling stability of lithium rich layered cathode materials Li1.2Ni0.13M0.13Mn0.54O2 where M = Fe or Co Laisa CP, Kumar AKN, Chandrasekaran SS, Murugan P, Lakshminarasimhan N, Govindaraj R, Ramesha K |
475 - 483 |
Characterization of graphite etched with potassium hydroxide and its application in fast-rechargeable lithium ion batteries Shim JH, Lee S |
484 - 491 |
pi-Spacer effect in dithiafulvenyl-pi-phenothiazine dyes for dye-sensitized solar cells Zhang XF, Gou FL, Zhao DN, Shi J, Gao H, Zhu ZP, Jing HW |
492 - 498 |
Proton exchange membrane fuel cell reversible performance loss induced by carbon monoxide produced during operation Decoopman B, Vincent R, Rosini S, Paganelli G, Thivel PX |
499 - 508 |
One-pot fabrication of NiFe2O4 nanoparticles on alpha-Ni(OH)(2) nanosheet for enhanced water oxidation Chen H, Yan JQ, Wu H, Zhang YX, Liu SZ |
509 - 520 |
Calculation of the state of safety (SOS) for lithium ion batteries Cabrera-Castillo E, Niedermeier F, Jossen A |
521 - 527 |
Carbonaceous thin film coating with Fe-N-4 site for enhancement of dioxovanadium ion reduction Maruyama J, Hasegawa T, Iwasaki S, Fukuhara T, Orikasa Y, Uchimoto Y |
528 - 537 |
Effect of modification of polyacrylonitrile-based graphite felts on their performance in redox fuel cell and redox flow battery Zhang Y, Qian GC, Huang CD, Wang YX |
538 - 546 |
Achieving high performance non-fullerene organic solar cells through tuning the numbers of electron deficient building blocks of molecular acceptors Yang L, Chen YS, Chen SS, Dong T, Deng W, Lv L, Yang SN, Yan H, Huang H |
547 - 555 |
Mesoporous carbon materials prepared from litchi shell as sulfur encapsulator for lithium-sulfur battery application Sun ZJ, Wang SJ, Yan LL, Xiao M, Han DM, Meng YZ |
556 - 571 |
Tolerance of non-platinum group metals cathodes proton exchange membrane fuel cells to air contaminants Reshetenko T, Serov A, Artyushkova K, Matanovic I, Stariha S, Atanassov P |
572 - 581 |
Exploring the sodium storage mechanism in disodium terephthalate as anode for organic battery using density-functional theory calculations Sk MA, Manzhos S |
582 - 588 |
Improving SiO2 impurity tolerance of Ce0.8Sm0.2O1.9: Synergy of CaO and ZnO in scavenging grain-boundary resistive phases Ge L, Ni Q, Cai GF, Sang TY, Guo LC |
589 - 597 |
Design and operation of an aluminium alloy tank using doped Na3AlH6 in kg scale for hydrogen storage Urbanczyk R, Peinecke K, Meggouh M, Minne P, Peil S, Bathen D, Felderhoff M |
598 - 614 |
Predicting the ultimate potential of natural gas SOFC power cycles with CO2 capture - Part A: Methodology and reference cases Campanari S, Mastropasqua L, Gazzani M, Chiesa P, Romano MC |
615 - 624 |
Ionic liquids as electrolytes for non-aqueous solutions electrochemical supercapacitors in a temperature range of 20 degrees C-80 degrees C Zhang L, Tsay K, Bock C, Zhang JJ |
625 - 636 |
Influence of hydrophobic treatment on the structure of compressed gas diffusion layers Totzke C, Gaiselmann G, Osenberg M, Arlt T, Markotter H, Hilger A, Kupsch A, Muller BR, Schmidt V, Lehnert W, Manke I |
637 - 645 |
Structural color-tunable mesoporous bragg stack layers based on graft copolymer self-assembly for high-efficiency solid-state dye-sensitized solar cells Lee CS, Park JT, Kim JH |
646 - 656 |
Characterization of gas diffusion electrodes for metal-air batteries Danner T, Eswara S, Schulz VP, Latz A |
657 - 664 |
Unveiling the sodium intercalation properties in Na-1.86 square Fe-0.14(3)(PO4)(3) Essehli R, Ben Yahia H, Maher K, Sougrati MT, Abouimrane A, Park JB, Sun YK, Al-Maadeed MA, Belharouak I |
665 - 673 |
A thermo-mechanical stress prediction model for contemporary planar sodium sulfur (NaS) cells Jung K, Colker JP, Cao YZ, Kim G, Park YC, Kim CS |
674 - 678 |
In-tank hydrogen-ferric ion recombination Selverston S, Savinell RF, Wainright JS |
679 - 686 |
Synthesis, characterization and performance of robust poison resistant ultrathin film yttria stabilized zirconia nickel anodes for application in solid electrolyte fuel cells Garcia-Garcia FJ, Yubero F, Espinos JP, Gonzalez-Elipe AR, Lambert RM |
687 - 693 |
RuO2 nanoparticles decorated MnOOH/C as effective bifunctional electrocatalysts for lithium-air battery cathodes with long-cycling stability Kim GP, Lim D, Park I, Park H, Shim SE, Baeck SH |
694 - 703 |
Lithium-ion Open Circuit Voltage (OCV) curve modelling and its ageing adjustment Lavigne L, Sabatier J, Francisco JM, Guillemard F, Noury A |
704 - 711 |
Improving sulfolane-based electrolyte for high voltage Li-ion cells with electrolyte additives Xia J, Dahn JR |
712 - 721 |
Towards safer sodium-ion batteries via organic solvent/ionic liquid based hybrid electrolytes Monti D, Ponrouch A, Palacin MR, Johansson P |
722 - 728 |
A concept for direct deposition of thin film batteries on flexible polymer substrate Glenneberg J, Andre F, Bardenhagen I, Langer F, Schwenzel J, Kun R |
729 - 737 |
Load cycle durability of a graphitized carbon black-supported platinum catalyst in polymer electrolyte fuel cell cathodes Takei C, Kakinuma K, Kawashima K, Tashiro K, Watanabe M, Uchida M |
738 - 744 |
A high-performance flow-field structured iron-chromium redox flow battery Zeng YK, Zhou XL, An L, Wei L, Zhao TS |
745 - 757 |
Prognostics of Proton Exchange Membrane Fuel Cells stack using an ensemble of constraints based connectionist networks Javed K, Gouriveau R, Zerhouni N, Hissel D |
758 - 765 |
First-principles study of ternary graphite compounds cointercalated with alkali atoms (Li, Na, and K) and alkylamines towards alkali ion battery applications Ri GC, Yu CJ, Kim JS, Hong SN, Jong UG, Ri MH |
766 - 773 |
Higher voltage plateau cubic Prussian White for Na-ion batteries Piernas-Munoz MJ, Castillo-Martinez E, Bondarchuk O, Armand M, Rojo T |
774 - 779 |
Impact of microstructure on oxygen semi-permeation performance of perovskite membranes: Understanding of oxygen transport mechanisms Reichmann M, Geffroy PM, Richet N, Chartier T |
780 - 787 |
Improved electrochemical performance of yolk-shell structured SnO2@void@C porous nanowires as anode for lithium and sodium batteries Li HZ, Yang LY, Liu J, Li ST, Fang LB, Lu YK, Yang HR, Liu SL, Lei M |
788 - 797 |
Rate capability improvement of polypyrrole via integration with functionalized commercial carbon cloth for pseudocapacitor Feng DY, Song Y, Huang ZH, Xu XX, Liu XX |
798 - 803 |
Oxygen substitution effects in Li10GeP2S12 solid electrolyte Sun YL, Suzuki K, Hara K, Hori S, Yano T, Hara M, Hirayama M, Kanno R |
804 - 829 |
Fault tolerance control for proton exchange membrane fuel cell systems Wu XJ, Zhou BY |
830 - 835 |
Investigation of a porous NiSi2/Si composite anode material used for lithium-ion batteries by X-ray absorption spectroscopy Zhou D, Jia HP, Rana J, Placke T, Klopsch R, Schumacher G, Winter M, Banhart J |
836 - 836 |
LiNiFe-based layered structure oxide and composite for advanced single layer fuel cells (vol 316, pg 37, 2016) Zhu B, Fan LD, Deng H, He YJ, Afzal M, Dong WJ, Yaqub A, Janjua NK |