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Citation information at Google scholar
검색어
381
Differentiating allotropic LiCoO2/Li2Co2O4: A structural and electrochemical study
J Power Sources 2014, 271, 97-103
2020-12-04
380
Effectively suppressing dissolution of manganese from spinel lithium manganate via a nanoscale surface-doping approach
Nat Commun 2014, 5, 5693
2020-12-04
379
Nanorod and Nanoparticle Shells in Concentration Gradient Core–Shell Lithium Oxides for Rechargeable Lithium Batteries
ChemSusChem 2014, 7, 3295-3303
2020-12-04
378
High dispersion of TiO2 nanocrystals within porous carbon improves lithium storage capacity and can be applied batteries to LiNi0.5Mn1.5O4
J Mater Chem A 2014, 2, 18938-18945
2020-12-04
377
An Advanced Lithium–Air Battery Exploiting an Ionic Liquid-Based Electrolyte
Nano Lett 2014, 14, 6572-6577
2020-12-04
376
High Capacity O3-Type Na[Li0.05(Ni0.25Fe0.25Mn0.5)0.95]O2 Cathode for Sodium Ion Batteries
Chem Mater 2014, 26, 6165-6171
2020-12-04
375
The binder effect on an oxide-based anode in lithium and sodium-ion battery applications: the fastest way to ultrahigh performance
Chem Commun 2014, 50, 13307-13310
2020-12-04
374
Characteristics of Li2S8-tetraglyme catholyte in a semi-liquid lithium–sulfur battery
J Power Sources 2014, 265, 14-19
2020-12-04
373
Simple fabrication and electrochemical performance of porous and double-shelled macroporous CuO nanomaterials with a thin carbon layer
RSC Adv 2014, 4, 60573-60580
2020-12-04
372
High-Energy Layered Oxide Cathodes with Thin Shells for Improved Surface Stability
Chem Mater 2014, 26, 5973-5979
2020-12-04
371
Migration of Mn cations in delithiated lithium manganese oxides
Phys Chem Chem Phys 2014, 16, 20697-20702
2020-12-04
370
Lithiation of an Iron Oxide-Based Anode for Stable, High-Capacity Lithium-Ion Batteries of Porous Carbon–Fe3O4/Li[Ni0.59Co0.16Mn0.25]O2
Energy Technol 2014, 2, 778-785
2020-12-04
369
Amorphous iron phosphate: potential host for various charge carrier ions
NPG Asia Materials 2014, 6, e138
2020-12-04
368
Low Temperature Electrochemical Properties of Li[NixCoyMn1-x-y]O2 Cathode Materials for Lithium-Ion Batteries
J Electrochem Soc 2014, 161, A1514-A1520
2020-12-04
367
Improved lithium-ion battery performance of LiNi0.5Mn1.5−xTixO4 high voltage spinel in full-cells paired with graphite and Li4Ti5O12 negative electrodes
J Power Sources 2014, 262, 62-71
2020-12-04
366
Effect of the size-selective silver clusters on lithium peroxide morphology in lithium–oxygen batteries
Nat Commun 2014, 5, 4895
2020-12-04
365
Surfactant-Assisted Synthesis of Fe2O3 Nanoparticles and F-Doped Carbon Modification toward an Improved Fe3O4@CFx/LiNi0.5Mn1.5O4 Battery
ACS Appl Mater Interfaces 2014, 6, 15499-15509
2020-12-04
364
Development of Microstrain in Aged Lithium Transition Metal Oxides
Nano Lett 2014, 14, 4873-4880
2020-12-04
363
High Electrochemical Performances of Microsphere C-TiO2 Anode for Sodium-Ion Battery
Acs Appl Materials Interfaces 2014, 6, 11295-11301
2020-12-04
362
A Lithium-Ion Sulfur Battery Based on a Carbon-Coated Lithium-Sulfide Cathode and an Electrodeposited Silicon-Based Anode
Acs Appl Mater Interfaces 2014, 6, 10924-10928
2020-12-04
361
Sodium-Ion Battery based on an Electrochemically Converted NaFePO4 Cathode and Nanostructured Tin–Carbon Anode
ChemPhysChem 2014, 15, 2152-2155
2020-12-04
360
A Physical Pulverization Strategy for Preparing a Highly Active Composite of CoOx and Crushed Graphite for Lithium–Oxygen Batteries
ChemPhysChem 2014, 15, 2070-2076
2020-12-04
359
Electrochemical Energy Conversion: Past, Present, and Future
ChemPhysChem 2014, 15, 1903-1904
2020-12-04
358
Recent advances in the Si-based nanocomposite materials as high capacity anode materials for lithium ion batteries
Mater Today 2014, 17, 285-297
2020-12-04
357
Thermal properties of fully delithiated olivines
J Power Sources 2014, 256, 479-484
2020-12-04
356
Aprotic and Aqueous Li–O2 Batteries
Chem Rev 2014, 114, 5611-5640
2020-12-04
355
Effect of Residual Lithium Compounds on Layer Ni-Rich Li[Ni0.7Mn0.3]O2
J Electrochem Soc 2014, 161, A920-A926
2020-12-04
354
A High-Energy Li-Ion Battery Using a Silicon-Based Anode and a Nano-Structured Layered Composite Cathode
Adv Funct Mater 2014, 24, 3036-3042
2020-12-04
353
Stable, High Voltage Li0.85Ni0.46Cu0.1Mn1.49O4 Spinel Cathode in a Lithium-Ion Battery Using a Conversion-Type CuO Anode
ACS Appl Mater Interfaces 2014, 6, 5206-5211
2020-12-04
352
Advanced Na[Ni0.25Fe0.5Mn0.25]O2/C−Fe3O4 Sodium-Ion Batteries Using EMS Electrolyte for Energy Storage
Nano Lett 2014, 14, 1620-1626
2020-12-04
351
Progress in High-Capacity Core–Shell Cathode Materials for Rechargeable Lithium Batteries
J Phys Chem Lett 2014, 5, 671-679
2020-12-04
350
α-Fe2O3 Submicron Spheres with Hollow and Macroporous Structures as High-Performance Anode Materials for Lithium Ion Batteries
J Phys Chem C 2014, 118, 2897-2907
2020-12-04
349
Anatase Titania Nanorods as an Intercalation Anode Material for Rechargeable Sodium Batteries
Nano Lett 2014, 14, 416-422
2020-12-04
348
Optimization of Layered Cathode Material with Full Concentration Gradient for Lithium-Ion Batteries
J Phys Chem C 2014, 118, 175-182
2020-12-04
347
Role of the Lithium Salt in the Performance of Lithium–Oxygen Batteries: A Comparative Study
ChemElectroChem 2014, 1, 47-50
2020-12-04
346
Comparison of Nanorod-Structured Li[Ni0.54Co0.16Mn0.30]O2 with Conventional Cathode Materials for Li-Ion Batteries
ChemSusChem 2014, 7, 245-252
2020-12-04
345
Electrochemical Properties of Polyaniline-Coated Li-Rich Nickel Manganese Oxide and Role of Polyaniline Coating Layer
J Electrochem Soc 2014, 161, A142-A148
2020-12-04