Enhancement of Sodium Ion Battery Performance Enabled by Oxygen Vacancies.
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Enhancement of Electrochemical Performance by the Oxygen Vacancies in Hematite as Anode Material for Lithium-Ion Batteries.1D Nanomaterials: Design, Synthesis, and Applications in Sodium-Ion Batteries.Multichannel Porous TiO2 Hollow Nanofibers with Rich Oxygen Vacancies and High Grain Boundary Density Enabling Superior Sodium Storage Performance.Recent Applications of 2D Inorganic Nanosheets for Emerging Energy Storage System.A Selectively Permeable Membrane for Enhancing Cyclability of Organic Sodium-Ion Batteries.Atomic Interface Engineering and Electric-Field Effect in Ultrathin Bi2 MoO6 Nanosheets for Superior Lithium Ion Storage.Highly nitrogen doped carbon nanofibers with superior rate capability and cyclability for potassium ion batteries.Manipulation of Disodium Rhodizonate: Factors for Fast-Charge and Fast-Discharge Sodium-Ion Batteries with Long-Term CyclabilityUnderstanding the Orderliness of Atomic Arrangement toward Enhanced Sodium StorageImprovement of Lithium Storage Performance of Molybdenum Trioxide by a Synergistic Effect of Surface Coating and Oxygen Vacancies
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P2860
Enhancement of Sodium Ion Battery Performance Enabled by Oxygen Vacancies.
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2015 nî lūn-bûn
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2015年の論文
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2015年学术文章
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2015年学术文章
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Enhancement of Sodium Ion Battery Performance Enabled by Oxygen Vacancies.
@en
type
label
Enhancement of Sodium Ion Battery Performance Enabled by Oxygen Vacancies.
@en
prefLabel
Enhancement of Sodium Ion Battery Performance Enabled by Oxygen Vacancies.
@en
P2093
P2860
P50
P356
P1476
Enhancement of Sodium Ion Battery Performance Enabled by Oxygen Vacancies
@en
P2093
Chengliang Wang
Fabian Grote
Liying Liang
Minghong Wu
P2860
P304
P356
10.1002/ANIE.201503477
P407
P577
2015-06-25T00:00:00Z