Zhong Lin Wang
17 articles listing Zhong Lin Wang in Nature Communications, Science Advances, indexed by Paperzzz from Crossref and OSF.
- Multi-interface electrical double layers dynamics as a unified platform for power generation and environmental intelligence Nature Communications
- Iontrovoltaic effect based on triboelectrically induced ion polarization at semiconductor-liquid interfaces Nature Communications
- Dynamically manipulated interface polarization via symmetry engineering for self-gated electronics Science Advances
- A triboelectric radical generation route to chlorine disinfectants from brine Nature Communications
- Atomically confined insertion for 2D strain and polarization engineered GaN electronics Nature Communications
- Probing contact electrification processes from interfacial charge transfer to bulk transport in semicrystalline polymers Nature Communications
- Capacitive piezotronics Nature Communications
- Ionic and adhesive triboelectric elastomer for normalizing charge polarity and density of contact electrification with general material Science Advances
- A generalized approach for enhancing contact-electro-catalysis of oxides in a broad temperature range by fluorination Nature Communications
- Probing electrical double layer via triboelectric charge transfer Nature Communications
- Machine learning–assisted triboelectric nanogenerator technology for intelligent sports Science Advances
- Biomimetic Janus MXene membrane with bidirectional ion permselectivity for enhanced osmotic effects and iontronic logic control Science Advances
- Bioinspired twist-hyperbolic metamaterial for impact buffering and self-powered real-time sensing in UAVs Science Advances
- Recyclable self-secreting autonomous healing dielectrics for millisecond water quality sensing Nature Communications
- Roadbed tribological energy harvester Science Advances
- Self-powered sensing platform based on triboelectric nanogenerators towards intelligent mining industry Nature Communications
- Field emission effect in triboelectric nanogenerators Nature Communications