Liujiang Zhou
Scholar

Liujiang Zhou

Google Scholar ID: l_uKeEwAAAAJ
Professor, University of Electronic Science and Technology of China
Quantum Materials and PhysicsOptical crystalsComputational Materials and Physics
Citations & Impact
All-time
Citations
6,108
 
H-index
44
 
i10-index
109
 
Publications
20
 
Co-authors
0
 
Contact
No contact links provided.
Resume (English only)
Academic Achievements
  • pH-Regulated Ring-Opening/Closing Transformation in Polyoxometalates Enables High-Performance Nonlinear Optical Crystals. Angew. Chem., Int. Ed. In Press. doi:10.1002/anie.202520861.
  • MoSi2N4/MoGe2N4 Heterojunction: A Theoretical Exploration for High-Efficiency Excitonic Solar Cell and Visible-Light Photohydrolytic Catalyst. Appl. Phys. Lett. 2025, 127(14):142107.
  • Efficient and Scalable Upcycling of Oceanic Carbon Sources into Bioplastic Monomers. Nature Catal. 2025, 8(10):1023–37.
  • MXene-Powered Terahertz Metamaterials as a Real-Time Biosensing Platform for In Vivo Thrombus Monitoring. Adv. Mater. 2025, e07063. Published time: 2025/8/31
  • Ultrathin lithium metal anodes for high-efficiency lithium batteries: synergizing surface LiF and Lithiophilic alloying. Energy Storage Mater. 2025, 82, 104579.
  • Quantum metric third-order nonlinear Hall effect in a non-centrosymmetric ferromagnet. Nat. Commun. 2025, 16, 7698. Published time: 2025/8/18
  • Extending the MXenes to MOenes with Emergent Quantum Phenomena. ACS Nano. 2025, 19, 33, 30060–30071. Published time: 2025/8/15
  • High 𝑛-type thermoelectric performance due to anisotropic charge-phonon transport in CuBiSCl2. Phys. Rev. B 2025, 112, 054306. Published time: 2025/8/7
  • Lithiophilic Ni2P@NCNT Interlayer for Uniform Li-Ion Flux and Stable Lithium Metal Batteries. ACS Appl. Mater. Interfaces 2025. Published time: 2025/6/16
  • High superconducting transition temperature in bilayer blue phosphorus by metal intercalation. Phys. Rev. B 2025, 1101, 235429. Published time: 2025/6/12
  • Temperature-dependent microwave dielectric permittivity in wurtzite AlN/6H-SiC heterostructures from deep potential molecular dynamics simulations. J. Appl. Phys. 2025, 137, 215101
  • Lithium-mediated nitrogen reduction on two-dimensional MN4-contained periodical macrocyclic structures: A DFT study. Chem. Phys. Lett. 2025, 877, 142189
  • Amorphous nickel iron hydroxide with polyphosphate groups for efficient and stable electrocatalytic oxygen evolution reaction in alkaline media. J. Alloys Compd. 2025, 1031, 180970
  • MoP/MoO₂ nanodot heterostructures supported on N, P-doped carbon nanotube networks as scalable and efficient electrocatalysts.
Co-authors
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Co-authors: 0 (list not available)