Area of research
Electrical and Electronic Engineering · Electronic, Optical and Magnetic Materials
Research interest
Research focused on Lithium (medication) and Mesoporous material, with related work in X-ray photoelectron spectroscopy, Lithium titanate, Spinel. Notable publications include 'Super high-rate, long cycle life of europium-modified, carbon-coated, hierarchical mesoporous lithium-titanate anode materials for lithium ion batteries', 'Facile synthesis of LiMn2O4 octahedral nanoparticles as cathode materials for high capacity lithium ion batteries with long cycle life', and 'Oxygen Vacancy Enhanced Two-Dimensional Lithium Titanate for Ultrafast and Long-Life Bifunctional Lithium Storage'.
Dendrite-free, interfacially compatible Na <sub>2</sub> ZrCl <sub>6</sub> composite halide solid-state electrolyte for solid-state sodium-ion batteries
Multilevel carbon composite construction of NASICON-type NaVPO<sub>4</sub>F/C/CNT cathode material for enhanced-performance sodium-ion batteries
Coal-derived two-dimensional MNb <sub>2</sub> O <sub>6</sub> (M = Mn, Fe, Co)/C hybrids with superior lithium storage performance
Controllable preparation of cation vacancy-modulated oxygen defect Mn <sub> 2− <i>x</i> </sub> P <sub>2</sub> O <sub> 7− <i>y</i> </sub> anodes to enhance lithium storage performance
Defects-engineered build in a Molecule-Based trinuclear iron cluster material as anode materials for lithium-ion batteries
Corrigendum to “Defects-engineered build in a Molecule-Based trinuclear iron cluster material as anode materials for lithium-ion batteries” [J. Electroanal. Chem. 980 (2025) 118990]
Application of isomorphic anion incorporation to enhance electrochemical performance of vanadium-based NASICON cathode materials
Coal-Derived Two-Dimensional Mnb2o6(M=Mn, Fe, Co)/C Hybrids with Superior Lithium Storage Performance
Anthraquinone-Based Conjugated Microporous Polymer as Anode for Long-Life Lithium Batteries
Dragon fruit-like diphase heterostructure C@Fe1−xS/FeS2 composite with high-rate capability and long-cycle life for sodium-ion storage
Constructing highly functional oxygen defect Li <sub>7</sub> La <sub>3</sub> Zr <sub>2</sub> O <sub>12</sub> -polyacrylonitrile composite electrolytes for all-solid state lithium-ion batteries
Nitrogen and Oxygen Dual‐Doped Carbon as High‐Rate Long‐Cycle‐Life Anode Materials for Lithium‐Ion Batteries
Fe-Doped NaVPO<sub>4</sub>F/C Compounds for Sodium-Ion Battery Cathodes: Electrochemical Performance and Analysis of Kinetic Properties
Oxygen defect-engineered Zn<sub>2</sub>P<sub>2</sub>O<sub>7−<i>y</i></sub> as an anode material for lithium-ion batteries
Defects-Engineered Build In a Molecule-Based Trinuclear Iron Cluster Material As Anode Materials for Lithium-Ion Batteries
Nitrogen self-doped carbon with super high-rate and long cycle life as anode materials for lithium-ion batteries
Double Valence States Europium Modified [110]-Confined Li4ti5o12nanoclusters for High-Rate Lithium Storage
Oxygen Vacancy Enhanced Two-Dimensional Lithium Titanate for Ultrafast and Long-Life Bifunctional Lithium Storage
Synthesis of hollow peanut-like hierarchical mesoporous LiNi1/3Co1/3Mn1/3O2 cathode materials with exceptional cycle performance for lithium-ion batteries by a simple self-template solid-state method
Synthesis of hierarchical mesoporous lithium nickel cobalt manganese oxide spheres with high rate capability for lithium-ion batteries
Super high-rate, long cycle life of europium-modified, carbon-coated, hierarchical mesoporous lithium-titanate anode materials for lithium ion batteries
Two-dimensional dysprosium-modified bamboo-slip-like lithium titanate with high-rate capability and long cycle life for lithium-ion batteries
Improved rate capability and cycling stability of novel terbium-doped lithium titanate for lithium-ion batteries
Synthesis of sulfur/FePO4/graphene oxide nanocomposites for lithium–sulfur batteries
High Rate Capability of Lithium Chromium Titanium Oxide Hierarchical Mesoporous Microspheres Anode Materials Synthesized by a One-Pot Co-Precipitation for Lithium Ion Batteries
Electrospun dual phase Li<sub>4</sub>Ti<sub>5</sub>O<sub>12</sub>-TiO<sub>2</sub>/C nanocomposites as anodes for high-rate lithium-ion batteries
Facile synthesis of LiMn2O4 octahedral nanoparticles as cathode materials for high capacity lithium ion batteries with long cycle life
Long cycle life, high rate capability of truncated octahedral LiMn2O4 cathode materials synthesized by a solid-state combustion reaction for lithium ion batteries