4.7 Article

High-performance LiFePO4 cathode material was prepared by multiple intensification process with acid-washed iron red as raw material

相关参考文献

注意:仅列出部分参考文献,下载原文获取全部文献信息。
Article Materials Science, Ceramics

Improved electrochemical properties of vanadium substituted Na0.67Fe0.5Mn0.5O2 cathode material for sodium-ion batteries

Yulei Sui et al.

Summary: This study successfully synthesized V-substituted Na0.67Fe0.5Mn0.5O2 cathode material with improved electrochemical performance, and investigated the effects of V-substitution on its chemical composition, crystal structure and morphology, as well as the modification mechanisms on the enhanced electrochemical properties. The results showed that introducing V ions into the lattice of Na0.67Fe0.5Mn0.5O2 crystals significantly improved its rate capability and cycle stability, mainly due to the enhanced Na+ diffusion rate and structural reversibility.

CERAMICS INTERNATIONAL (2021)

Article Materials Science, Multidisciplinary

Boosting lithium storage performance of Si nanoparticles via thin carbon and nitrogen/phosphorus co-doped two-dimensional carbon sheet dual encapsulation

Cheng-Zhi Ke et al.

Summary: By utilizing a double carbon synergistic encapsulation strategy, researchers have successfully developed a 2D NPC/C@Si electrode with excellent cycling stability and capacity retention, demonstrating high reversible capacity and outstanding rate capability.

RARE METALS (2021)

Article Chemistry, Physical

Mn3O4 anchored polypyrrole nanotubes as an efficient sulfur host for high performance lithium-sulfur batteries

Gongyu Wen et al.

Summary: By constructing a free-standing framework using Mn3O4 nanoparticles and PPy nanotubes as host materials, this study successfully addresses the issues of poor conductivity and excessive volume changes of sulfur in lithium-sulfur batteries, achieving high rate performance and long cycle stability.

JOURNAL OF COLLOID AND INTERFACE SCIENCE (2021)

Article Materials Science, Multidisciplinary

Recent advances in black-phosphorus-based materials for electrochemical energy storage

Yulei Sui et al.

Summary: The article discusses the potential of black phosphorus as a candidate material for next-generation energy storage devices, highlighting its advantageous properties and existing challenges. It emphasizes the importance of improving synthesis methods and electrochemical performance to enhance its practical applicability.

MATERIALS TODAY (2021)

Article Physics, Multidisciplinary

Advance in interface and characterizations of sulfide solid electrolyte materials

Zhang Qiao-Bao et al.

ACTA PHYSICA SINICA (2020)

Article Chemistry, Multidisciplinary

Harnessing the concurrent reaction dynamics in active Si and Ge to achieve high performance lithium-ion batteries

Qiaobao Zhang et al.

ENERGY & ENVIRONMENTAL SCIENCE (2018)

Article Chemistry, Physical

Controllable synthesis of N-C@LiFePO4 nanospheres as advanced cathode of lithium ion batteries

Q. Q. Xiong et al.

JOURNAL OF ALLOYS AND COMPOUNDS (2018)

Article Nanoscience & Nanotechnology

Enhancement of the Rate Capability of LiFePO4 by a New Highly Graphitic Carbon-Coating Method

Jianjun Song et al.

ACS APPLIED MATERIALS & INTERFACES (2016)

Article Electrochemistry

Site-dependent electrochemical performance of Mg doped LiFePO4

Jiangfeng Ni et al.

ELECTROCHEMISTRY COMMUNICATIONS (2014)

Article Materials Science, Multidisciplinary

Effects of particle size and carbon coating on electrochemical properties of LiFePO4/C prepared by hydrothermal method

Yung-Chang Chang et al.

JOURNAL OF MATERIALS SCIENCE (2014)

Article Energy & Fuels

Physicochemical properties of lithium iron phosphate-carbon as lithium polymer battery cathodes

Bo Jin et al.

INTERNATIONAL JOURNAL OF ENERGY RESEARCH (2013)

Article Chemistry, Physical

Improving rate performance of LiFePO4 cathode materials by hybrid coating of nano-Li3PO4 and carbon

Shi-Xi Zhao et al.

JOURNAL OF ALLOYS AND COMPOUNDS (2013)

Review Chemistry, Multidisciplinary

Understanding and recent development of carbon coating on LiFePO4 cathode materials for lithium-ion batteries

Jiajun Wang et al.

ENERGY & ENVIRONMENTAL SCIENCE (2012)

Article Chemistry, Physical

Enhanced electrochemical properties of LiFePO4 cathode material by CuO and carbon co-coating

Yan Cui et al.

JOURNAL OF ALLOYS AND COMPOUNDS (2010)

Article Materials Science, Multidisciplinary

High rate electrochemical performances of nanosized ZnO and carbon co-coated LiFePO4 cathode

Yan Cui et al.

MATERIALS RESEARCH BULLETIN (2010)

Article Electrochemistry

Surface Treatment of LiFePo4 Cathode Material for Lithium Secondary Battery

Jong-Tae Son

JOURNAL OF THE KOREAN ELECTROCHEMICAL SOCIETY (2010)

Article Chemistry, Physical

The effect of carbon coating thickness on the capacity of LiFePO4/C composite cathodes

Yung-Da Cho et al.

JOURNAL OF POWER SOURCES (2009)

Article Chemistry, Physical

Effects of TiO2 coating on high-temperature cycle performance of LiFePO4-based lithium-ion batteries

Hao-Hsun Chang et al.

JOURNAL OF POWER SOURCES (2008)

Article Electrochemistry

Study of LiFePO4 by cyclic voltammetry

Denis Y. W. Yu et al.

JOURNAL OF THE ELECTROCHEMICAL SOCIETY (2007)

Article Electrochemistry

Surface characterization of electrodes from high power lithium-ion batteries

AM Andersson et al.

JOURNAL OF THE ELECTROCHEMICAL SOCIETY (2002)

Article Chemistry, Physical

Electronically conductive phospho-olivines as lithium storage electrodes

SY Chung et al.

NATURE MATERIALS (2002)

Article Chemistry, Physical

Determination of the chemical diffusion coefficient of lithium in LiFePO4

PP Prosini et al.

SOLID STATE IONICS (2002)

Article Electrochemistry

A novel concept for the synthesis of an improved LiFePO4 lithium battery cathode

F Croce et al.

ELECTROCHEMICAL AND SOLID STATE LETTERS (2002)

Article Chemistry, Physical

Novel LiCoO2 cathode material with Al2O3 coating for a Li ion cell

J Cho et al.

CHEMISTRY OF MATERIALS (2000)