1 - 1 |
Preface for 16th IMLB Park JK |
2 - 10 |
Optimum sizing and optimum energy management of a hybrid energy storage system for lithium battery life improvement Masih-Tehrani M, Ha'iri-Yazdi MR, Esfahanian V, Safaei A |
11 - 16 |
Safety of large-capacity lithium-ion battery and evaluation of battery system for telecommunications Tsujikawa T, Yabuta K, Arakawa M, Hayashi K |
17 - 22 |
Mn-Fe-based oxide electrocatalysts for air electrodes of lithium-air batteries Minowa H, Hayashi M, Hayashi K, Kobayashi R, Takahashi K |
23 - 28 |
The effect of thermal stability for high-Ni-content layer-structured cathode materials, LiNi0.8Mn0.1-xCo0.1MoxO2 (x=0, 0.02, 0.04) Konishi H, Yoshikawa M, Hirano T |
29 - 34 |
Sodium additive to improve rate performance of Li[Li0.2Mn0.54Ni0.13Co0.13]O-2 material for Li-ion batteries Du K, Yang F, Hu GR, Peng ZD, Cao YB, Ryu KS |
35 - 42 |
Preparation and characterization of spinel LiNi0.5-xMgxMn1.5O4 cathode materials via spray pyrolysis method Shiu JJ, Pang WK, Wu SH |
43 - 49 |
Control of interface of glass-ceramic electrolyte/liquid electrolyte for aqueous lithium batteries Yang TH, Liu XJ, Sang L, Ding F |
50 - 55 |
Improvement of tap density of TiO2(B) powder as high potential negative electrode for lithium ion batteries Saito M, Nakano Y, Takagi M, Honda N, Tasaka A, Inaba M |
56 - 62 |
One step preparation of Mn3O4/graphene composites for use as an anode in Li ion batteries Nam I, Kim ND, Kim GP, Park J, Yi J |
63 - 71 |
Synthesis and electrochemical properties of xLiFePO(4)center dot(1-x)LiVPO4F composites prepared by aqueous precipitation and carbothermal reduction Lin YC, Fey GTK, Wu PJ, Chang JK, Kao HM |
72 - 79 |
Carbon-sphere/Co3O4 nanocomposite catalysts for effective air electrode in Li/air batteries Park CS, Kim KS, Park YJ |
80 - 86 |
Composite materials based on polymer-derived SiCN ceramic and disordered hard carbons as anodes for lithium-ion batteries Wilamowska M, Graczyk-Zajac M, Riedel R |
87 - 93 |
New fluorophosphate Li2-xNaxFe[PO4]F as cathode material for lithium ion battery Ben Yahia H, Shikano M, Koike S, Sakaebe H, Tabuchi M, Kobayashi H |
94 - 100 |
Nano particle LiFePO4 prepared by solvothermal process Wang L, Sun WT, Tang XY, Huang XK, He XM, Li JJ, Zhang QW, Gao J, Tian GY, Fan SS |
101 - 108 |
A simulation on safety of LiFePO4/C cell using electrochemical-thermal coupling model Wang SR, Lu LL, Liu XJ |
109 - 114 |
A simple electrochemical cell for in-situ fundamental structural analysis using synchrotron X-ray powder diffraction Brant WR, Schmid S, Du GD, Gu QF, Sharma N |
115 - 121 |
Microstructures and electrochemical performances of nano-sized SiOx (1.18 <= x <= 1.83) as an anode material for a lithium(Li)-ion battery Kim MK, Jang BY, Lee JS, Kim JS, Nahm S |
122 - 128 |
Diphenyloctyl phosphate as a solid electrolyte interphase forming additive for Li-ion batteries Park IJ, Nam TH, Kim JG |
129 - 135 |
Preparation and electrochemical properties of glass-modified LiCoO2 cathode powders Choi SH, Kim JH, Ko YN, Yang KM, Kang YC |
136 - 142 |
Interface phenomena between Li anode and lithium phosphate electrolyte for Li-ion battery Santosh KC, Xiong K, Longo RC, Cho K |
143 - 148 |
Modeling the temperature dependence of the discharge behavior of a lithium-ion battery in low environmental temperature Yi J, Kim US, Shin CB, Han T, Park S |
149 - 157 |
Electrochemical behaviors of nonstoichiometric silicon suboxides (SiOx) film prepared by reactive evaporation for lithium rechargeable batteries Takezawa H, Iwamoto K, Ito S, Yoshizawa H |
158 - 163 |
Real-time investigation of the structural evolution of electrodes in a commercial lithium-ion battery containing a V-added LiFePO4 cathode using in-situ neutron powder diffraction Hu CW, Sharma N, Chiang CY, Su HC, Peterson VK, Hsieh HW, Lin YF, Chou WC, Shew BY, Lee CH |
164 - 169 |
Facile synthesis of hierarchical mesoporous Li4Ti5O12 microspheres in supercritical methanol Nugroho A, Kim SJ, Chang W, Chung KY, Kim J |
170 - 176 |
Electrochemical properties of semi-interpenetrating polymer network solid polymer electrolytes based on multi-armed oligo(ethyleneoxy) phosphate He D, Kim DW, Park JS, Cho SY, Kang Y |
177 - 182 |
Synthesis of Fe3O4/C composite microspheres for a high performance lithium-ion battery anode Jung BY, Lim HS, Sun YK, Suh KD |
183 - 188 |
Insight into lithium-sulfur batteries: Elementary kinetic modeling and impedance simulation Fronczek DN, Bessler WG |
189 - 195 |
Large discharge capacities at high current rates for carbon-coated LiMnPO4 nanocrystalline cathodes Dinh HC, Mho SI, Kang Y, Yeo IH |
196 - 206 |
Technological potential and issues of polyacrylonitrile based nanofiber non-woven separator for Li-ion rechargeable batteries Kim YJ, Kim HS, Doh CH, Kim SH, Lee SM |
207 - 213 |
Electrochemical properties of carbon-composite NASICON-type iron sulfate Fe-2(SO4)(3) as a cathode for lithium secondary batteries Setiawati E, Hayashi M, Tsuda M, Hayashi K, Kobayashi R |
214 - 221 |
A Li-ion battery using LiMn2O4 cathode and MnOx/C anode Chae C, Park H, Kim D, Kim J, Oh ES, Lee JK |
222 - 233 |
Synthesis of Li[Ni0.2Li0.2Mn0.6]O-2 nano-particles and their surface modification using a polydopamine layer Lee HJ, Park YJ |
234 - 239 |
A novel polymer electrolyte with improved high-temperature-tolerance up to 170 degrees C for high-temperature lithium-ion batteries Li YH, Wu XL, Kim JH, Xin S, Su J, Yan Y, Lee JS, Guo YG |
240 - 245 |
The electrochemical properties of high-capacity sulfur/reduced graphene oxide with different electrolyte systems Wang YX, Chou SL, Liu HK, Dou SX |
246 - 251 |
Electrochemical performances and mechanisms of MnSn2 as anode material for Li-ion batteries Mahmoud A, Chamas M, Jumas JC, Philippe B, Dedryvere R, Gonbeau D, Saadoune I, Lippens PE |
252 - 258 |
Quantification of lithium in LIB electrodes with glow discharge optical emission spectroscopy (GD-OES) Takahara H, Shikano M, Kobayashi H |
259 - 265 |
Nanocomposite Si/(NiTi) anode materials synthesized by high-energy mechanical milling for lithium-ion rechargeable batteries Loka C, Yu H, Lee KS, Cho J |
266 - 271 |
Effect of ionic liquid as a flame-retarding additive on the cycling performance and thermal stability of lithium-ion batteries Bae SY, Shim EG, Kim DW |
272 - 279 |
Structure and high rate performance of Ni2+ doped Li4Ti5O12 for lithium ion battery Lin CF, Lai MO, Lu L, Zhou HH, Xin YL |
280 - 286 |
Liquid phase co-exfoliated MoS2-graphene composites as anode materials for lithium ion batteries Pham VH, Kim KH, Jung DW, Singh K, Oh ES, Chung JS |
287 - 293 |
High performance composite solid polymer electrolyte systems for electrochemical cells Wu GM, Lin SJ, Yang CC |
294 - 299 |
Heat generation behavior during charging and discharging of lithium-ion batteries after long-time storage Saito Y, Shikano M, Kobayashi H |
300 - 305 |
Cr and V substituted LiSn2P3O12 solid electrolyte materials Norhaniza R, Subban RHY, Mohamed NS |
306 - 311 |
Worm-like mesoporous structured iron-based fluoride: Facile preparation and application as cathodes for rechargeable lithium ion batteries Lu Y, Wen ZY, Rui K, Wu XW, Cui YM |
312 - 317 |
Improvement of solid-state symmetric cell performance with lithium vanadium phosphate Kobayashi E, Kitajou A, Okada S, Yamaki J |
318 - 327 |
A combined experimental and theoretical study of surface film formation: Effect of oxygen on the reduction mechanism of propylene carbonate Haregewoin AM, Leggesse EG, Jiang JC, Wang FM, Hwang BJ, Lin SD |
328 - 335 |
Urchin-like alpha-MnO2 decorated with Au and Pd as a bi-functional catalyst for rechargeable lithium-oxygen batteries Jung KN, Riaz A, Lee SB, Lim TH, Park SJ, Song RH, Yoon S, Shin KH, Lee JW |
336 - 343 |
Characteristics of Li2TiO3-LiCrO2 composite cathode powders prepared by ultrasonic spray pyrolysis Ko YN, Choi SH, Kang YC, Park SB |
344 - 353 |
Polydopamine-assisted carbon nanotubes/Co3O4 composites for rechargeable Li-air batteries Yoon TH, Park YJ |
354 - 362 |
Development of all-solid-state lithium battery using quasi-solidified tetraglyme-lithium bis(trifluoromethanesulfonyl)amide-fumed silica nano-composites as electrolytes Unemoto A, Matsuo T, Ogawa H, Gambe Y, Honma I |
363 - 368 |
Cycling characteristics of lithium metal batteries assembled with a surface modified lithium electrode Choi SM, Kang IS, Sun YK, Song JH, Chung SM, Kim DW |
369 - 374 |
Effect of VC additive on MFA-based electrolyte in Li-ion batteries Zhao LW, Okada S, Yamaki J |
375 - 381 |
Preparation of nanocrystalline LiMn2O4 thin film by electrodeposition method and its electrochemical performance for lithium battery Quan Z, Ohguchi S, Kawase M, Tanimura H, Sonoyama N |
382 - 388 |
Soft chemical synthesis and electrochemical properties of Li0.90Mn0.90Ti0.10O2 with the Na0.44MnO2-type tunnel structure Akimoto J, Hayakawa H, Ishida N, Funabiki F, Kijima N, Shibuya H, Imaizumi J |
389 - 394 |
Direct ultraviolet-assisted conformal coating of nanometer-thick poly(tris(2-(acryloyloxy)ethyl) phosphate) gel polymer electrolytes on high-voltage LiNi1/3Co1/3Mn1/3O2 cathodes Lee EH, Park JH, Cho JH, Cho SJ, Kim DW, Dan H, Kang Y, Lee SY |
395 - 402 |
Facile synthesis of ZrO2 coated Li2CoPO4F cathode materials for lithium secondary batteries with improved electrochemical properties Amaresh S, Karthikeyan K, Kim KJ, Kim MC, Chung KY, Cho BW, Lee YS |
403 - 409 |
Towards an all-solid-state battery: Preparation of conversion anodes by electrodeposition-oxidation processes Lopez MC, Ortiz GF, Lavela P, Tirado JL |
410 - 416 |
Atomic layer deposition of TiO2 on negative electrode for lithium ion batteries Lee ML, Su CY, Lin YH, Liao SC, Chen JM, Perng TP, Yeh JW, Shih HC |
417 - 428 |
Designing the 3D-microbattery geometry using the level-set method Zadin V, Brandell D, Kasemagi H, Lellep J, Aabloo A |
429 - 434 |
Fe phthalocyanine supported by graphene nanosheet as catalyst in Li-air battery with the hybrid electrolyte Yoo E, Zhou HS |
435 - 441 |
Facile approach to synthesize CuO/reduced graphene oxide nanocomposite as anode materials for lithium-ion battery Rai AK, Anh LT, Gim J, Mathew V, Kang J, Paul BJ, Singh NK, Song J, Kim J |
442 - 449 |
Thickness-tunable polyimide nanoencapsulating layers and their influence on cell performance/thermal stability of high-voltage LiCoO2 cathode materials for lithium-ion batteries Park JH, Cho JH, Lee EH, Kim JM, Lee SY |
450 - 455 |
Lithium insertion into carbon-rich SiOC ceramics: Influence of pyrolysis temperature on electrochemical properties Kaspar J, Graczyk-Zajac M, Riedel R |
456 - 462 |
Influence of Sn content on microstructure and electrochemical properties of Sn-NiTi film anodes in lithium ion batteries Hu RZ, Liu H, Zeng MQ, Liu JW, Zhu M |
463 - 468 |
Hydrogen treated, cap-opened Si nanotubes array anode for high power lithium ion battery Ha J, Paik U |
469 - 475 |
High-power and long-life lithium-ion batteries using lithium titanium oxide anode for automotive and stationary power applications Takami N, Inagaki H, Tatebayashi Y, Saruwatari H, Honda K, Egusa S |
476 - 481 |
Effect of mixing method on the properties of composite cathodes for all-solid-state lithium batteries using Li2S-P2S5 solid electrolytes Kim J, Eom M, Noh S, Shin D |
482 - 487 |
Li4Ti5O12 thin-film electrodes by sol-gel for lithium-ion microbatteries Mosa J, Velez JF, Reinosa JJ, Aparicio M, Yamaguchi A, Tadanaga K, Tatsumisago M |
488 - 493 |
A study of PtxCoy alloy nanoparticles as cathode catalysts for lithium-air batteries with improved catalytic activity Su DW, Kim HS, Kim WS, Wang GX |
494 - 498 |
Effect of porosity on electrochemical properties of carbon materials as cathode for lithium-oxygen battery Ma SB, Lee DJ, Roev V, Im D, Doo SG |
499 - 504 |
Dimethoxydiphenylsilane (DDS) as overcharge protection additive for lithium-ion batteries Chen L, Xu MQ, Li B, Xing LD, Wang Y, Li WS |
505 - 509 |
Synthesis and electrochemical properties of layered Li1.0Mn0.82Ni0.10Ti0.08O2 prepared by chemical lithium insertion Ishida N, Hayakawa H, Shibuya H, Imaizumi J, Akimoto J |
510 - 514 |
Nanocomposite C/Li2MnSiO4 cathode material for lithium ion batteries Swietoslawski M, Molenda M, Furczon K, Dziembaj R |
515 - 520 |
Influence of the crystallographic orientation of silicon nanowires in a carbon matrix on electrochemical performance as negative electrode materials for lithium-ion batteries Baek SH, Park JS, Bae EJ, Jeong YI, Noh BY, Kim JH |
521 - 526 |
Effect of polyimide binder on electrochemical characteristics of surface-modified silicon anode for lithium ion batteries Kim JS, Choi W, Cho KY, Byun D, Lim J, Lee JK |
527 - 531 |
Effects of a dopant on the electrochemical properties of Li4Ti5O12 as a lithium-ion battery anode material Park JS, Baek SH, Jeong YI, Noh BY, Kim JH |
532 - 537 |
Electrochemical performance of cathodes prepared on current collector with different surface morphologies Nakamura T, Okano S, Yaguma N, Morinaga Y, Takahara H, Yamada Y |
538 - 543 |
Monodispersed hollow carbon/Fe3O4 composite microspheres for high performance anode materials in lithium-ion batteries Hwang JK, Lim HS, Sun YK, Suh KD |
544 - 547 |
Contribution of oxygen partial density of state on lithium intercalation/de-intercalation process in LixNi0.5Mn1.5O4 spinel oxides Okumura T, Shikano M, Kobayashi H |
548 - 551 |
Electroactive separator for high voltage graphite/LiNi0.5Mn1.5O4 lithium ion batteries Leitner KW, Wolf H, Garsuch A, Chesneau F, Schulz-Dobrick M |
552 - 556 |
Lithium storage in reduced graphene oxides Kuo SL, Liu WR, Kuo CP, Wu NL, Wu HC |
557 - 560 |
Synthesis and lithium intercalation properties of Li3VO4 as a new anode material for secondary lithium batteries Kim WT, Jeong YU, Lee YJ, Kim YJ, Song JH |
561 - 564 |
Electrochemical properties of transition metal substituted calcium ferrite-type Li-x(M0.1Mn0.9)(2)O-4 (M = Ni, Ti) Mamiya M, Kataoka K, Akimoto J, Kikuchi S, Terajima Y, Tokiwa K |
565 - 569 |
Electrochemical properties of chemically modified phosphoolivines as cathode materials for Li-ion batteries Kulka A, Baster D, Dudek M, Kielbasa M, Milewska A, Zajac W, Swierczek K, Molenda J |
570 - 574 |
Silicon/carbon nanocomposite pyrolyzed from phenolic resin as anode materials for lithium-ion batteries Wang MS, Fan LZ |
575 - 580 |
Facile synthesis of carbon layer-entangled Fe2O3 clusters as anode materials for improved Li-ion batteries Oh HD, Lee SW, Kim SO, Lee JK |
581 - 585 |
Crystal and local structure studies of LiFe0.48Mn0.48Mg0.04PO4 cathode material for lithium rechargeable batteries Jang D, Palanisamy K, Yoon J, Kim Y, Yoon WS |
586 - 591 |
Synthesis and electrochemical properties of LiFePO4-graphite nanofiber composites as cathode materials for lithium ion batteries Nguyen VH, Jin EM, Gu HB |
592 - 596 |
High temperature defect chemistry in layered lithium transition-metal oxides based on first-principles calculations Koyama Y, Arai H, Tanaka I, Uchimoto Y, Ogumi Z |
597 - 600 |
Electrochemical performance of all-solid-state lithium batteries with Sn4P3 negative electrode Ueda A, Nagao M, Inoue A, Hayashi A, Seino Y, Ota T, Tatsumisago M |
601 - 605 |
Highly porous dendritic Ni-Sn anodes for lithium-ion batteries Zhuo K, Jeong MG, Chung CH |
606 - 609 |
Li metal utilization in lithium air rechargeable batteries Jang IC, Hidaka Y, Ishihara T |
610 - 613 |
One-pot synthesis of NiFe2O4/C composite as an anode material for lithium-ion batteries Ding Y, Yang YF, Shao HX |
614 - 619 |
Functional binder for high-performance Li-O-2 batteries Cui YM, Wen ZY, Lu Y, Wu MF, Liang X, Jin J |
620 - 624 |
Electrochemical behavior of carbon-coated silicon monoxide electrode with chromium coating in rechargeable lithium cell Hwang SW, Lee JK, Yoon WY |
625 - 630 |
Characteristics of stabilized spinel cathode powders obtained by in-situ coating method Hong YJ, Son MY, Lee JK, Lee HB, Lee SH, Kang YC |
631 - 635 |
Synthesis and electrical property of Li2-xFeSi1-xPxO4 as positive electrodes by spark-plasma-sintering process Arachi Y, Higuchi Y, Nakamura R, Takagi Y, Tabuchi M |
636 - 640 |
Investigation on modified natural rubber gel polymer electrolytes for lithium polymer battery Ali AMM, Subban RHY, Bahron H, Yahya MZA, Kamisan AS |
641 - 645 |
Characteristics of lithium phosphorous oxynitride thin films deposited by metal-organic chemical vapor deposition technique Kim HT, Mun T, Park C, Jin SW, Park HY |
646 - 651 |
Electrochemical properties of an as-deposited LiFePO4 thin film electrode prepared by aerosol deposition Kim I, Park J, Nam TH, Kim KW, Ahn JH, Park DS, Ahn C, Wang G, Ahn HJ |
652 - 657 |
Synthesis and characterization of Li(Li0.23Mn0.47Fe0.2Ni0.1)O-2 cathode material for Li-ion batteries Li JG, Wang L, Wang L, Luo J, Gao J, Li JJ, Wang JL, He XM, Tian GY, Fan SS |
658 - 662 |
Cathode properties of Mn-doped inverse spinels for Li-ion battery Kitajou A, Yoshida J, Nakanishi S, Okada S, Yamaki J |
663 - 667 |
Improving the electrochemical performance of LiMn0.85Fe0.15PO4-LiFePO4 core-shell materials based on an investigation of carbon source effect Oh SM, Sun YK |
668 - 674 |
How does lithium salt anion affect oxidation decomposition reaction of ethylene carbonate: A density functional theory study Li TT, Xing LD, Li WS, Wang YT, Xu MQ, Gu FL, Hu SJ |
675 - 678 |
Determination of the rate-determining step in the electrochemical oxidation of Li metal at the Li negative electrode/Li2S-P2S5 solid electrolyte interface Chiku M, Tsujiwaki W, Higuchi E, Inoue H |
679 - 683 |
A novel soft-chemical synthetic route using Na2Ti6O13 as a starting compound and electrochemical properties of H2Ti12O25 Akimoto J, Kataoka K, Kojima N, Hayashi S, Gotoh Y, Sotokawa T, Kumashiro Y |
684 - 689 |
In-situ hydrothermal synthesis of graphene woven VO2 nanoribbons with improved cycling performance Shi Y, Chou SL, Wang JZ, Li HJ, Liu HK, Wu YP |
690 - 694 |
The composite rods of MnO and multi-walled carbon nanotubes as anode materials for lithium ion batteries Sun XF, Xu YL, Ding P, Jia MR, Ceder G |
695 - 701 |
Overcharging a lithium-ion battery: Effect on the LixC6 negative electrode determined by in situ neutron diffraction Sharma N, Peterson VK |
702 - 706 |
Biotemplated synthesis of LiFePO4/C matrixes for the conductive agent-free cathode of lithium ion batteries Fan Q, Lei LX, Chen YF, Sun YM |
707 - 710 |
Preparation and ionic conductivities of (100-x)(0.75Li(2)S center dot 0.25P(2)S(5))center dot xLiBH(4) glass electrolytes Yamauchi A, Sakuda A, Hayashi A, Tatsumisago M |
711 - 715 |
Lactam derivatives as solid electrolyte interphase forming additives for a graphite anode of lithium-ion batteries Yoon S, Kim H, Cho JJ, Han YK, Lee H |
716 - 720 |
Trip lite LiFeSO4F as cathode material for Li-ion batteries Dong JP, Yu XQ, Sun Y, Liu L, Yang XQ, Huang XJ |
721 - 725 |
Performance enhancement of a lithium ion battery by incorporation of a graphene/polyvinylidene fluoride conductive adhesive layer between the current collector and the active material layer Lee S, Oh ES |
726 - 730 |
Electrospun Li4Ti5O12 nanofibers sheathed with conductive TiN/TiOxNy layer as an anode material for high power Li-ion batteries Park H, Song T, Han H, Paik U |
731 - 735 |
High performance MnO thin-film anodes grown by radio-frequency sputtering for lithium ion batteries Cui ZH, Guo XX, Li H |
736 - 741 |
Study of the series Ti1-yNbySnSb with 0 <= y <= 1 as anode material for Li-ion batteries Marino C, Sougrati MT, Darwiche A, Fullenwarth J, Fraisse B, Jumas JC, Monconduit L |
742 - 746 |
One-dimensional magnetite Fe3O4 nanowires as electrode material for Li-ion batteries with improved electrochemical performance Su DW, Ahn HJ, Wang G |
747 - 751 |
Free-standing heterogeneous hybrid papers based on mesoporous gamma-MnO2 particles and carbon nanotubes for lithium-ion battery anodes Yun YS, Kim JM, Park HH, Lee J, Huh YS, Jin HJ |
752 - 757 |
Electrochemical and thermal properties of hard carbon-type anodes for Na-ion batteries Zhao J, Zhao LW, Chihara K, Okada S, Yamaki J, Matsumoto S, Kuze S, Nakane K |
758 - 763 |
Diffusion behavior of sodium ions in Na0.44MnO2 in aqueous and non-aqueous electrolytes Kim DJ, Ponraj R, Kannan AG, Lee HW, Fathi R, Ruffo R, Mari CM, Kim DK |
764 - 770 |
Degradation mechanism of room temperature Na/Ni3S2 cells using Ni3S2 electrodes prepared by mechanical alloying Ryu HS, Kim JS, Park J, Park JY, Cho GB, Liu X, Ahn IS, Kim KW, Ahn JH, Ahn JP, Martin SW, Wang G, Ahn HJ |
771 - 776 |
Challenges and obstacles in the development of sodium-air batteries Peled E, Golodnitsky D, Hadar R, Mazor H, Goor M, Burstein L |
777 - 782 |
Enhanced charge storage by optimization of pore structure in nanocomposite between ordered mesoporous carbon and nanosized WO3-x Zhou Y, Ko S, Lee CW, Pyo SG, Kim SK, Yoon S |
783 - 791 |
Enhancement of electrochemical performance of textile based supercapacitor using mechanical pre-straining Yun TG, Oh M, Hu LB, Hyun S, Han SM |
792 - 798 |
Relation of micropores/mesopore ratio on high electrochemical performance of nano-porous carbons Kim KS, Park SJ |
799 - 805 |
High performance supercapacitor prepared from hollow mesoporous carbon capsules with hierarchical nanoarchitecture Bhattacharjya D, Kim MS, Bae TS, Yu JS |
806 - 811 |
Facile preparation of three-dimensional porous hydrous ruthenium oxide electrode for supercapacitors Jeong MG, Zhuo K, Cherevko S, Kim WJ, Chung CH |