Synergy of a hierarchical porous morphology and anionic defects of nanosized Li4Ti5O12 toward a high-rate and large-capacity lithium-ion battery
Author:
Publisher
Elsevier BV
Subject
Electrochemistry,Energy (miscellaneous),Energy Engineering and Power Technology,Fuel Technology
Reference88 articles.
1. A robust strategy for crafting monodisperse Li4Ti5O12 nanospheres as superior rate anode for lithium ion batteries
2. Outstanding rate capability and long cycle stability induced by homogeneous distribution of nitrogen doped carbon and titanium nitride on the surface and in the bulk of spinel lithium titanate
3. Studies of Mg-Substituted Li[sub 4−x]Mg[sub x]Ti[sub 5]O[sub 12] Spinel Electrodes (0≤x≤1) for Lithium Batteries
4. Rational synthesis of Li4Ti5O12/N-C nanotube arrays as advanced high-rate electrodes for lithium-ion batteries
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1. Electron beam-assisted synthesis and modification of electrode/separator materials for lithium-ion batteries: Progress and prospects;Coordination Chemistry Reviews;2024-09
2. Lithium Titanate‐Based Nanomaterials for Lithium‐Ion Battery Applications: A Critical Review;Nanostructured Materials for Energy Storage;2024-08-16
3. Carbon-coated Li4Ti5O12 nanoflakes for ultra-fast charging of lithium-ion batteries;Applied Surface Science;2024-05
4. One-step synthesis of Cl-doped Li4Ti5O12 during electrode fabrication process with improved specific capacity;Journal of Solid State Electrochemistry;2024-01-03
5. Application of two-dimensional lamellar lithium titanate in lithium-ion anode batteries;Electrochemistry Communications;2023-11
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