1 - 9 |
Hierarchical nanosheet-based MoS2/graphene nanobelts with high electrochemical energy storage performance Jia YL, Wan HQ, Chen L, Zhou HD, Chen JM |
10 - 15 |
Electrochemical performance of Na2Ti3O7/C negative electrode in ionic liquid electrolyte for sodium secondary batteries Ding C, Nohira T, Hagiwara R |
16 - 25 |
Li4Ti5O12 composited with Li2ZrO3 revealing simultaneously meliorated ionic and electronic conductivities as high performance anode materials for Li-ion batteries Han JP, Zhang B, Bai X, Wang LY, Qi YX, Lun N, Bai YJ |
26 - 33 |
Promotion on electrochemical performance of a cation deficient SrCo0.7Nb0.1Fe0.2O3-delta perovskite cathode for intermediate-temperature solid oxide fuel cells Ding LM, Wang LX, Ding D, Zhang SH, Ding XF, Yuan GL |
34 - 40 |
Synthesis and electrochemical properties of 4LiF-NiMn2O4 composite as a cathode material for Li-ion batteries Tomita Y, Kimura N, Izumi Y, Arai J, Kohno Y, Kobayashi K |
41 - 47 |
High-power durability of LiCoO2 thin film electrode modified with amorphous lithium tungsten oxide Hayashi T, Matsuda Y, Kuwata N, Kawamura J |
48 - 56 |
Mesoporous Co-CoO/N-CNR nanostructures as high-performance air cathode for lithium-oxygen batteries Hyun S, Shanmugam S |
57 - 67 |
Effect of coating density on oxidation resistance and Cr vaporization from solid oxide fuel cell interconnects Talic B, Falk-Windisch H, Venkatachalam V, Hendriksen PY, Wiik K, Lein HL |
68 - 73 |
Li3PO4-added garnet-type Li6.5La3Zr1.5Ta0.5O12 for Li-dendrite suppression Xu BY, Li WL, Duan HN, Wang HJ, Guo YP, Li H, Liu HZ |
74 - 84 |
Thermal cycling and electrochemical characteristics of solid oxide fuel cell supported on stainless steel with a new 3-phase composite anode Dayaghi AM, Kim KJ, Kim SJ, Kim S, Bae H, Choi GM |
85 - 91 |
Hierarchical carbon cloth supported Li4Ti5O12@NiCo2O4 branched nanowire arrays as novel anode for flexible lithium-ion batteries Xu FH, Yu FL, Liu C, Han PD, Weng BC |
92 - 99 |
Modulation of of the microstructure of the Ag/C-based alkaline cathode via the ionomer content for a bipolar membrane fuel cell Xu X, Peng SK, Lu SF, Gong J, Zhang J, Huang WX, Xiang Y |
100 - 107 |
Direct aqueous synthesis of quantum dots for high-performance AgInSe2 quantum-dot-sensitized solar cell Li PN, Ghule AV, Chang JY |
108 - 115 |
Post-infiltration of a multilayered carbon nanofilm with MnO2 at low loadings for improved capacitive properties Li YH, Li TT, Lu Y, Wang X, Gao ZD, Song YY |
116 - 123 |
Squid inks-derived nanocarbons with unique "shell@pearls" structure for high performance supercapacitors Cheng FL, Liu W, Zhang Y, Wang HL, Liu S, Hao E, Zhao SP, Yang HZ |
124 - 133 |
Interfacial instability of amorphous LiPON against lithium: A combined Density Functional Theory and spectroscopic study Sicolo S, Fingerle M, Hausbrand R, Albe K |
134 - 147 |
3D direct writing fabrication of electrodes for electrochemical storage devices Wei M, Zhang F, Wang W, Alexandridis P, Zhou C, Wu G |
148 - 156 |
Aqueous energy-storage cells based on activated carbon and LiMn2O4 electrodes Hanna O, Luski S, Brousse T, Aurbach D |
157 - 166 |
Introduction of capacity difference analysis (CDA) for analyzing lateral lithium-ion flow to determine the state of covering layer evolution Lewerenz M, Warnecke A, Sauer DU |
167 - 171 |
High performance direct methanol fuel cell with thin electrolyte membrane Wan NF |
172 - 178 |
Enhanced rate performance of Li4Ti5O12 anodes with bridged grain boundaries Feng XY, Li X, Tang MX, Gan A, Hu YY |
179 - 188 |
Defect-rich TiO2-delta nanocrystals confined in a mooncake-shaped porous carbon matrix as an advanced Na ion battery anode He HN, Zhang Q, Wang HY, Zhang HH, Li JD, Peng ZG, Tang YG, Shao MH |
189 - 199 |
Effect of CeO2 coprecipitation on the electrochemical performance of Li(Li,Ni,Mn,Co)O-2-CeO2-C composite cathode materials Kurilenko KA, Shlyakhtin OA, Petukhov DI, Garshev AV |
200 - 206 |
Enabling aqueous processing for crack-free thick electrodes Du ZJ, Rollag KM, Li J, An SJ, Wood M, Sheng Y, Mukherjee PP, Daniel C, Wood DL |
207 - 214 |
Thermal conductivity of catalyst layer of polymer electrolyte membrane fuel cells: Part 1-Experimental study Ahadi M, Tam M, Saha MS, Stumper J, Bahrami M |
215 - 228 |
Thermal conductivity of catalyst layer of polymer electrolyte membrane fuel cells: Part 2-Analytical modeling Ahadi M, Putz A, Stumper J, Bahrami M |