Lithiated Manganese-Based Materials for Lithium-Ion Capacitor: A Review
Lithium-ion capacitors (LICs) are a novel and promising form of energy storage device that combines the electrode materials of lithium-ion batteries with supercapacitors. They have the potential to deliver high energy density, power density, and long cycle life concurrently. Due to the good electroc...
| Published in: | Energies |
|---|---|
| Main Authors: | Ntuthuko W. Hlongwa, Naledi Raleie |
| Format: | Article |
| Language: | English |
| Published: |
MDPI AG
2022-10-01
|
| Subjects: | |
| Online Access: | https://www.mdpi.com/1996-1073/15/19/7276 |
Similar Items
Blending Lithium Nickel Manganese Cobalt Oxide with Lithium Iron Manganese Phosphate as Cathode Materials for Lithium-ion Batteries with Enhanced Electrochemical Performance
by: Mayu SHIOZAKI, et al.
Published: (2023-07-01)
by: Mayu SHIOZAKI, et al.
Published: (2023-07-01)
POTASSIUM-INTERCALATED MANGANESE DIOXIDE AS LITHIUM-ION BATTERY CATHODES: A DENSITY FUNCTIONAL THEORY STUDY
by: Agus Ismail, et al.
Published: (2019-02-01)
by: Agus Ismail, et al.
Published: (2019-02-01)
Porous Manganese Oxide Networks as High-Capacity and High-Rate Anodes for Lithium-Ion Batteries
by: Jaeho Choi, et al.
Published: (2021-02-01)
by: Jaeho Choi, et al.
Published: (2021-02-01)
Green Phytic Acid-Assisted Synthesis of LiMn<sub>1-x</sub>Fe<sub>x</sub>PO<sub>4</sub>/C Cathodes for High-Performance Lithium-Ion Batteries
by: Yueying Li, et al.
Published: (2024-08-01)
by: Yueying Li, et al.
Published: (2024-08-01)
Revelation of the transition‐metal doping mechanism in lithium manganese phosphate for high performance of lithium‐ion batteries
by: Bo Zhang, et al.
Published: (2022-10-01)
by: Bo Zhang, et al.
Published: (2022-10-01)
Industrial Recycling of Lithium-Ion Batteries—A Critical Review of Metallurgical Process Routes
by: Lisa Brückner, et al.
Published: (2020-08-01)
by: Lisa Brückner, et al.
Published: (2020-08-01)
Gravure Printing for Lithium-Ion Batteries Manufacturing: A Review
by: Maria Montanino, et al.
Published: (2023-10-01)
by: Maria Montanino, et al.
Published: (2023-10-01)
Morphology modification of LiNi0.5Co0.2Mn0.3O2 by incorporating cotton textiles in lithium-ion capacitors
by: Phat Truong, et al.
Published: (2024-05-01)
by: Phat Truong, et al.
Published: (2024-05-01)
Local Study of Lithiation and Degradation Paths in LiMn2O4 Battery Cathodes: Confocal Raman Microscopy Approach
by: Boris Slautin, et al.
Published: (2018-05-01)
by: Boris Slautin, et al.
Published: (2018-05-01)
Facile Controlled Synthesis of Spinel LiMn2O4 Porous Microspheres as Cathode Material for Lithium Ion Batteries
by: Yun Hai, et al.
Published: (2019-06-01)
by: Yun Hai, et al.
Published: (2019-06-01)
Li<sub>2</sub>ZrO<sub>3</sub>-Coated Monocrystalline LiAl<sub>0.06</sub>Mn<sub>1.94</sub>O<sub>4</sub> Particles as Cathode Materials for Lithium-Ion Batteries
by: Chunliu Li, et al.
Published: (2021-11-01)
by: Chunliu Li, et al.
Published: (2021-11-01)
Lithium adsorption performance of Co-doped manganese-based lithium-ion sieves prepared via solid-phase synthesis
by: Yuxin TU, et al.
Published: (2025-01-01)
by: Yuxin TU, et al.
Published: (2025-01-01)
Continuous Flow‐By Electrochemical Reactor Design for Direct Lithium Extraction from Brines
by: Clara Roggerone, et al.
Published: (2024-06-01)
by: Clara Roggerone, et al.
Published: (2024-06-01)
Cubic nanocrystal constructed 3D porous LiMn2O4: Low-temperature pyrolysis formation and high-performance as a cathode material for aqueous hybrid capacitor
by: Jun Fan, et al.
Published: (2021-05-01)
by: Jun Fan, et al.
Published: (2021-05-01)
Suppress oxygen evolution of lithium-rich manganese-based cathode materials via an integrated strategy
by: Wenhua Yu, et al.
Published: (2024-01-01)
by: Wenhua Yu, et al.
Published: (2024-01-01)
Lithium manganese iron phosphate materials: Design, progress, and challenges
by: Huilong Zeng, et al.
Published: (2025-03-01)
by: Huilong Zeng, et al.
Published: (2025-03-01)
Effects of Copper Doping in High‐Rate, Lithium Manganese‐Rich Layered Oxide Cathodes for Lithium‐Ion Batteries
by: Dr. Marta Cabello, et al.
Published: (2023-08-01)
by: Dr. Marta Cabello, et al.
Published: (2023-08-01)
Lithium borates as a surface protective layer for lithium-manganese spinel
by: Koshkina, Anastasia A., et al.
Published: (2024-06-01)
by: Koshkina, Anastasia A., et al.
Published: (2024-06-01)
Preparation of PPy-Coated MnO2 Hybrid Micromaterials and Their Improved Cyclic Performance as Anode for Lithium-Ion Batteries
by: Lili Feng, et al.
Published: (2017-09-01)
by: Lili Feng, et al.
Published: (2017-09-01)
Magnesium Insertion and Related Structural Changes in Spinel-Type Manganese Oxides
by: Ana Robba, et al.
Published: (2021-08-01)
by: Ana Robba, et al.
Published: (2021-08-01)
Sorbents based on the manganese oxides designed for selective removal of lithium ions
by: L. Y. Kotynska, et al.
Published: (2025-06-01)
by: L. Y. Kotynska, et al.
Published: (2025-06-01)
Modification Strategies of High-Energy Li-Rich Mn-Based Cathodes for Li-Ion Batteries: A Review
by: Zhenjie Xi, et al.
Published: (2024-02-01)
by: Zhenjie Xi, et al.
Published: (2024-02-01)
Polypyrrole/Al2O3/LiMn2O4 cathode for enhanced storage of Li ions
by: Liang Zhu, et al.
Published: (2021-03-01)
by: Liang Zhu, et al.
Published: (2021-03-01)
Evaluation of the effect of the synthesis method on the performance of manganese spinel as cathode material in lithium-ion batteries
by: Lina Maria Uribe-Grajales, et al.
Published: (2018-06-01)
by: Lina Maria Uribe-Grajales, et al.
Published: (2018-06-01)
Synthesis of MnO/reduced graphene oxide composites as high performance anode materials for Li-ion batteries
by: MIAO Xiao-fei, et al.
Published: (2017-03-01)
by: MIAO Xiao-fei, et al.
Published: (2017-03-01)
Short Review: Timeline of the Electrochemical Lithium Recovery System Using the Spinel LiMn<sub>2</sub>O<sub>4</sub> as a Positive Electrode
by: Hwajoo Joo, et al.
Published: (2020-11-01)
by: Hwajoo Joo, et al.
Published: (2020-11-01)
Influence of structural characteristics on sorption properties of lithium-selective composite materials based on TiO<sub>2</sub> and MnO<sub>2</sub>
by: M. O. Chaban, et al.
Published: (2014-08-01)
by: M. O. Chaban, et al.
Published: (2014-08-01)
Identifying the Active Species in Li-Na Dual-Ion “Saltwater Battery” Based on Spinel Lithium Manganese Oxide, Sodium Titanium Phosphate and Aqueous Electrolyte
by: Jonathan Schubert, et al.
Published: (2023-06-01)
by: Jonathan Schubert, et al.
Published: (2023-06-01)
Dataset of lithium-ion cell degradation under randomized current profiles for NMC, NCA, and LFP chemistriesFairdata
by: Mohsen Heydarzadeh, et al.
Published: (2025-06-01)
by: Mohsen Heydarzadeh, et al.
Published: (2025-06-01)
Cycling stability of lithium-ion batteries with pressure-treated NCM811 cathodes
by: Yusuke Abe, et al.
Published: (2025-09-01)
by: Yusuke Abe, et al.
Published: (2025-09-01)
Evaluation of cracking damage in electrode materials of a LMO/Al-Lix lithium-ion battery through analysis of acoustic emission signals
by: Seung-Mi Lee, et al.
Published: (2023-05-01)
by: Seung-Mi Lee, et al.
Published: (2023-05-01)
Suppressing Manganese Dissolution via Exposing Stable {111} Facets for High‐Performance Lithium‐Ion Oxide Cathode
by: Yao Xiao, et al.
Published: (2019-07-01)
by: Yao Xiao, et al.
Published: (2019-07-01)
Lithium plating accurate detection of lithium-ion capacitors upon high-rate charging
by: Shasha Zhao, et al.
Published: (2025-10-01)
by: Shasha Zhao, et al.
Published: (2025-10-01)
Synthesis and electrochemical properties of polycrystalline nano manganese dioxide
by: ZHANG Xinpeng, et al.
Published: (2025-07-01)
by: ZHANG Xinpeng, et al.
Published: (2025-07-01)
Structural Insights Into Aluminum‐Doped Manganese Dioxides as Promising Materials for Direct Lithium Extraction: Modeling and Mechanism Study
by: Shuxuan Yan, et al.
Published: (2025-06-01)
by: Shuxuan Yan, et al.
Published: (2025-06-01)
Advances of Carbon Materials for Dual-Carbon Lithium-Ion Capacitors: A Review
by: Ying Duan, et al.
Published: (2022-11-01)
by: Ying Duan, et al.
Published: (2022-11-01)
Monodisperse Manganese‐Vanadium‐Oxo Clusters with Extraordinary Lithium Storage
by: Wensi Tang, et al.
Published: (2024-08-01)
by: Wensi Tang, et al.
Published: (2024-08-01)
Improved lithium-ion battery anode capacity with a network of easily fabricated spindle-like carbon nanofibers
by: Mengting Liu, et al.
Published: (2016-09-01)
by: Mengting Liu, et al.
Published: (2016-09-01)
Electrochemical behavior of nanostructured MnO2/C (Vulcan®) composite in aqueous electrolyte LiNO3
by: Vujković Milica, et al.
Published: (2011-01-01)
by: Vujković Milica, et al.
Published: (2011-01-01)
An Adaptable Capacity Estimation Method for Lithium-Ion Batteries Based on a Constructed Open Circuit Voltage Curve
by: Linjing Zhang, et al.
Published: (2025-07-01)
by: Linjing Zhang, et al.
Published: (2025-07-01)
Similar Items
-
Blending Lithium Nickel Manganese Cobalt Oxide with Lithium Iron Manganese Phosphate as Cathode Materials for Lithium-ion Batteries with Enhanced Electrochemical Performance
by: Mayu SHIOZAKI, et al.
Published: (2023-07-01) -
POTASSIUM-INTERCALATED MANGANESE DIOXIDE AS LITHIUM-ION BATTERY CATHODES: A DENSITY FUNCTIONAL THEORY STUDY
by: Agus Ismail, et al.
Published: (2019-02-01) -
Porous Manganese Oxide Networks as High-Capacity and High-Rate Anodes for Lithium-Ion Batteries
by: Jaeho Choi, et al.
Published: (2021-02-01) -
Green Phytic Acid-Assisted Synthesis of LiMn<sub>1-x</sub>Fe<sub>x</sub>PO<sub>4</sub>/C Cathodes for High-Performance Lithium-Ion Batteries
by: Yueying Li, et al.
Published: (2024-08-01) -
Revelation of the transition‐metal doping mechanism in lithium manganese phosphate for high performance of lithium‐ion batteries
by: Bo Zhang, et al.
Published: (2022-10-01)
