Xue Meng

ORCID: 0009-0008-5863-9903
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About
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Research Areas
  • Advanced Sensor and Energy Harvesting Materials
  • Advanced Memory and Neural Computing
  • Building materials and conservation
  • Polymer composites and self-healing
  • Thermography and Photoacoustic Techniques
  • Electrospun Nanofibers in Biomedical Applications
  • Glass properties and applications
  • Neuroscience and Neural Engineering
  • Thermal Radiation and Cooling Technologies
  • Transition Metal Oxide Nanomaterials
  • Urban Heat Island Mitigation

University of Chinese Academy of Sciences
2024-2025

Technical Institute of Physics and Chemistry
2024-2025

Chinese Academy of Sciences
2024-2025

Nanjing University of Aeronautics and Astronautics
2017

Currently, it remains challenging to balance intrinsic stiffness with programmability in most vitrimers. Simultaneously, coordinating materials gel-like iontronic properties for ion transmission while maintaining vitrimer programmable features underexplored. Here, we introduce a phase-engineering strategy fabricate bicontinuous heterogel (VHG) materials. Such VHGs exhibited high mechanical strength, an elastic modulus of up 116 MPa, strain performance exceeding 1000%, and switchable ratio...

10.1126/sciadv.adl2737 article EN cc-by-nc Science Advances 2024-03-08

Abstract In bioneuronal systems, the synergistic interaction between mechanosensitive piezo channels and neuronal synapses can convert transmit pressure signals into complex temporal plastic pulses with excitatory inhibitory features. However, existing artificial tactile neuromorphic systems struggle to replicate elaborate plasticity observed features in biological which is critical for biomimetic processing memorizing of information. Here we demonstrate a mechano-gated iontronic...

10.1038/s41467-025-56393-w article EN cc-by Nature Communications 2025-01-26

A new gamma-ray irradiation method was used to modify the inorganic silicate binder for improving adhesion of low infrared emissivity (LIE) coatings. First, spectral characteristic solidified irradiated characterised by FTIR and cross-section morphology coatings observed SEM. Then, LIE containing systematically investigated scratch test. In addition, in high-temperature conditions also studied. The results indicated that could exhibit better after due Si–O–Fe chemical bonding. At last, at...

10.1080/02670844.2017.1295632 article EN Surface Engineering 2017-07-21
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