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Prof. Dr. Yongmei Zheng
School of Chemistry,Beihang University
Welcome to
zhengyongmei.polymer.cn
Visits:784149
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ACS Nano: High-efficiency fog collector
International Society of Bionic Engneering
Yongmei Zheng Researches
www.polymer.cn
www.rheology.cn
www.chemshow.cn
www.chembbs.com.cn
Contact Info.
Address:北京市昌平区高教园南三街9号北京航空航天大学实验七号楼409
Zip:102206
Tel:---
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Email:
zhengym@buaa.edu.cn
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Current Location :> Home > PUBLICATIONS
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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
(Adv. Mater.) Icephobic/Anti-icing Properties of Micro-/Nanostructured Surfaces
(Adv. Mater.) Controlling Water Capture of Bio-inspired Fibers with Hump Structures
(Small) Large-scale fabrication of bioinspired fibers for directional water collection
(Adv. Mater.) Controlled Fabrication and Water Collection Ability of Bioinspired Artificial Spider Silks
(Soft Matter) Capillary adhesion of wetted cribellate spider capture silks for larger pearly hanging-drops
(Adv. Funct. Mater.) Bio-inspired Heterostructured Fibers with Bead-on-String to Respond the Environmental Wetting
(Soft Matter) Multi-level Micro-/Nanostructures of Butterfly Wing Adapt Low Temperature to Water Repellency
(Nature) Directional Water Collection on Wetted Spider Silk
(Adv. Mater.) Direction Controlled Driving of Tiny Water Drops on Bio-inspired Artificial Spider Silks
(Appl. Phys. Lett.) Ratchet-induced anisotropic behavior of superparamagnetic microdroplet
(Appl. Phys. Lett.) In situ investigation on dynamic suspending of microdroplet on lotus leaf and gradient of wettab...
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