Fanteng Meng

ORCID: 0009-0007-6276-7708
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About
Contact & Profiles
Research Areas
  • Infrastructure Maintenance and Monitoring
  • Advanced Measurement and Detection Methods
  • Industrial Vision Systems and Defect Detection
  • Advanced Battery Technologies Research
  • Remote Sensing and LiDAR Applications
  • Advancements in Battery Materials
  • Electrical Fault Detection and Protection
  • Advanced battery technologies research
  • Extraction and Separation Processes
  • Engineering Applied Research
  • Supercapacitor Materials and Fabrication
  • Fire Detection and Safety Systems
  • Perovskite Materials and Applications
  • Non-Destructive Testing Techniques
  • Advanced Neural Network Applications
  • Advanced Battery Materials and Technologies

China University of Petroleum, East China
2023-2025

Beijing Jiaotong University
2022-2024

Abstract Designing crystal structures that enable fast Li‐ion transport is essential for achieving high performance in oxide electrodes low‐temperature lithium‐ion batteries (LT‐LIBs), especially micron‐scale particles. The introduction of point defects considered to be effective accelerating local at room temperature, but due the discontinuity defects, enhancement low temperatures remains verified. Besides, understanding defect impact quite limited. In this study, a vanadium pentoxide (V 2...

10.1002/adfm.202419994 article EN Advanced Functional Materials 2025-01-07

Abstract Regulating the interlayer spacing of vanadium oxides by various pillars has commonly been used for improving zinc‐ion storage performance. However, most reported are large and rigid, which sacrifices free volume, increases steric hindrance, results in volume change. Herein, a layered oxide with –OH controllable heat treatment rigid NH 4 + is prepared. Although small‐sized, they can firmly support interlayers through covalent bond. In addition, rotatable promote Zn‐ion diffusion...

10.1002/aenm.202203810 article EN Advanced Energy Materials 2023-03-08

Lithium-ion batteries (LIBs) suffer from severe capacity degradation and shortened cycle life at low operating temperatures due to sluggish Li+ diffusion kinetics within the bulk phase of large-sized electrode materials,...

10.1039/d5ee00041f article EN Energy & Environmental Science 2025-01-01
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