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Citation information at Google scholar
검색어
160
Li2O–B2O3–P2O5 solid electrolyte for thin film batteries
J. Power. Sources. 2006, 163, 223-228
2020-12-04
159
Relationship between glass network structure and conductivity of Li2O–B2O3–P2O5 solid electrolyte
Electrochim. Acta. 2006, 52, 1576-1581
2020-12-04
158
The roles and electrochemical characterizations of activated carbon in zinc air battery cathodes
Electrochim. Acta. 2006, 52, 1592-1595
2020-12-04
157
Rapidly solidified Ti–Si alloys/carbon composites as anode for Li-ion batteries
Electrochim. Acta. 2006, 52, 1523-1526
2020-12-04
156
Improvement of electrochemical properties of Li[Ni0.4Co0.2Mn(0.4−x)Mgx]O2−yFy cathode materials at high voltage region
Electrochim. Acta. 2006, 52, 1477-1482
2020-12-04
155
High capacity Li[Li0.2Ni0.2Mn0.6]O2 cathode materials via a carbonate co-precipitation method
J. Power. Sources. 2006, 162, 1346-1350
2020-12-04
154
Hydrothermal synthesis of nano-sized anatase TiO2 powders for lithium secondary anode materials
J. Power. Sources. 2006, 161, 1314-1318
2020-12-04
153
Effect of sulfur and nickel doping on morphology and electrochemical performance of LiNi0.5Mn1.5O4−xSx spinel material in 3-V region
J. Power. Sources. 2006, 161, 19-26
2020-12-04
152
Synthesis of Spherical Nano- to Microscale Core−Shell Particles Li[(Ni0.8Co0.1Mn0.1)1-x(Ni0.5Mn0.5)x]O2 and Their Applications to Lithium Batteries
Chem. Mater. 2006, 18, 5159-5163
2020-12-04
151
Electrochemical Properties of Lithium-Rich Li1+x(Mn1/3Ni1/3Co1/3)1-xO2 at High Potential
J. Electrochem. Soc. 2006, 153, A1818-A1822
2020-12-04
150
Synthesis and characterization of spherical morphology [Ni0.4Co0.2Mn0.4]3O4 materials for lithium secondary batteries
J. Power. Sources. 2006, 160, 558-562
2020-12-04
149
Synthesis and electrochemical properties of Li[Ni0.8Co0.1Mn0.1]O2 and Li[Ni0.8Co0.2]O2 via co-precipitation
J. Power. Sources. 2006, 159, 1328-1333
2020-12-04
148
Improvement of cycling performance of Li1.1Mn1.9O4 at 60 °C by NiO addition for Li-ion secondary batteries
Electrochim. Acta. 2006, 51, 5912-5919
2020-12-04
147
Synthesis and electrochemical properties of Li[Ni0.4Co0.2Mn(0.4−x)Mgx]O2−yFy via a carbonate co-precipitation
Curr. Appl. Phys. 2006, 6, E12-E16
2020-12-04
146
Water activities of polymeric membrane/water systems in fuel cells
J. Power. Sources. 2006, 157, 733-738
2020-12-04
145
Improved Electrochemical Cycling Behavior of ZnO -Coated Li1.05Al0.1Mn1.85O3.95F0.05 Spinel at 55°C
J. Electrochem. Soc. 2006, 153, A1290-A1295
2020-12-04
144
Improvement of electrochemical property of LiNi0.5Mn1.5O4 spinel material by fluorine substitution
J. Power. Sources. 2006, 157, 464-470
2020-12-04
143
Ultrasonic spray pyrolysis of nano crystalline spinel LiMn2O4 showing good cycling performance in the 3 V range
Electrochim. Acta. 2006, 51, 4089-4095
2020-12-04
142
Significant Improvement of High Voltage Cycling Behavior AlF3-Coated LiCoO2 Cathode
Electrochem. Commun. 2006, 8, 821-826
2020-12-04
141
Novel Core-shell Structured Li[(Ni0.8Co0.2)0.8(Ni0.5Mn0.5)0.2]O2 via Coprecipitation as Positive Electrode Material for Lithium Secondary Batteries
J Phys. Chem. B 2006, 110, 6810-6815
2020-12-04
140
Synthesis of Li[(Ni0.5Mn0.5)1-xLix]O2 by Emulsion Drying Method and Impact of Excess Li on Structural and Electrochemical Properties
Chem. Mater 2006, 18, 1658-1666
2020-12-04
139
Microscale Core-Shell Structured Li [(Ni0.8Co0.1Mn0.1)0.8 (Ni0.5Mn0.5)0.2]O2 as Positive Electrode Material for Lithium Batteries
Electrochem. Solid St 2006, 9, A171-A174
2020-12-04
138
Synthesis of spherical Li[Ni(1/3−z)Co(1/3−z)Mn(1/3−z)Mgz]O2 as positive electrode material for lithium-ion battery
Electrochim. Acta. 2006, 51, 2447-2453
2020-12-04
137
The effects of Na doping on performance of layered Li1.1 − xNax[Ni0.2Co0.3Mn0.4]O2 materials for lithium secondary batteries
Mater Chem. Phys. 2006, 95, 218-221
2020-12-04
136
Phase behaviors of solid polymer electrolytes/salt system in lithium secondary battery by group-contribution method: doping The pressure effect
Polymer 2006, 47, 211-217
2020-12-04
135
A Review of Li-ion Cell Chemistries and their Potential use as Hybrid Electric Vehicles
J. Ind. Eng. Chem. 2006, 12, 12-38
2020-12-04