LIU Fenghua
Professor
State Key Laboratory of Advanced Marine Materials
Group:Metal Strengthening and Tribocorrosion Resistance Research
lfh@nimte.ac.cn
Research Interests
(1)Advanced Electromagnetic Protective Materials;(2) High-Strength and High-Toughness Fiber Composites
Biography
2020/12-present: Ningbo Institute of Materials Technology and Engineering, CAS, Professor
Representative Publications
(1) Hierarchical composite fabrication by constructing Ni-encapsulated carbon nanotubes on N-doped carbon nanonets for high-performance absorbers, Chemical Engineering Journal, 2025, Corresponding Author
(2) Achieving long-term cycling stability in Na3V2(PO4)3 cathode material through polymorphic carbon network coating, Carbon, 2025, Corresponding Author
(3) Facile construction of graphene based ultra folding resistance and high-efficiency electric heating film by multi-molecules induced orientation and interface regulation, Chemical Engineering Journal, 2025, Corresponding Author
(4) Multidimensional carbon architecture empowering Na4Fe3(PO4)2P2O7 cathode: An ultra-stable sodium-ion battery design enduring 10,000 cycles, Chemical Engineering Journal, 2025, Corresponding Author
(5) Facile construction of intelligent flexible double layer honeycomb sandwich structure for tunable microwave absorption by 4D printing, Additive Manufacturing, 2025, Corresponding Author
(6) Orbital hybridization induced dipole polarization and room temperature magnetism of atomic Co-N4-C toward electromagnetic energy attenuation, Advanced Functional Materials, 2024, Corresponding Author
(7) Multi-heterogeneous interfaces boost dielectric polarization in PBA-derived Co/MnO@NC ternary composites for electromagnetic wave absorption, Carbon, 2024, Corresponding Author
(8) Direct ink writing printed flexible double-layer staggered woodpile structure for multi-band compatible absorption of gigahertz and terahertz waves, Chemical Engineering Journal, 2023, Corresponding Author
(9) Architecture-inspired N-doped carbon nanotube bridging well-arranged MXene nanosheets toward efficient electromagnetic wave absorption, Composites Part B: Engineering, 2023, Corresponding Author
(10) Enhanced interfacial polarization of defective porous carbon confined CoP nanoparticles forming Mott Schottky heterojunction for efficient electromagnetic wave absorption, Nano Research, 2023, Corresponding Author