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Prof. Dr. Yongmei Zheng
School of Chemistry,Beihang University
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Bioinspired Micro-/Nanostructure Fibers with Water collecting Property
Bioinspired wet-assembly fibers: from nanofragments to microhumps on string in mist
Strong anti-ice ability of nanohairs over micro-ratchet structures
Controlled Directional Water-Droplet Spreading on a High-Adhesion Surface
Directional size-triggered microdroplet target transport on gradient-step fibers
Wetting-controlled Strategies: from Theories to Bio-inspiration.
Excellent bead-on-string silkworm silk fiber for drop-capturing ability.
Ice-phobic gummed tape with nano-cones-on-microspheres
Anti-fogging and icing-delay properties on composite micro- and nanostructured surfaces
Asymmetric ratchet effect for directional transport of fog drops on static and dynamic butterfly wings
Bioinspired tilt-angle fabricated structure gradient fibers: micro-drops fast transport in a long-distance
Photo-controlled water gathering on bio-inspired fibers
Temperature-triggered directional motion of tiny water droplets on bioinspired fibers in humidity
Water-assisted fabrication of porous bead-on-string fibers
(Soft Matter) Stronger water hanging ability and higher water collection efficiency of bioinspired fiber with multi-...
(Science product) Smart Bio-Inspired Interfacial Materials for Unique Wettability
(Langmuir) Water collection behavior and hanging ability of bioinspired fiber.
(Adv. Mater.) Functional Fibers with Unique Wettability Inspired by Spider Silk
(Soft Matter) Bioinspired spindle-knotted fibers with a strong water-collecting ability from humid environment.
(Soft Matter) Directional shedding-off of water on natural/bio-mimetic taper-ratchet array surfaces
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