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Prof. Dr. Yongmei Zheng
School of Chemistry,Beihang University
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Address:北京市昌平區(qū)高教園南三街9號北京航空航天大學(xué)實(shí)驗(yàn)七號樓409
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Bioinspired Superwettable Surfaces and Materials for Liquid Motion Control
An Atmospheric Water-Harvester with Ultrahigh Uptake-Release Efficiency at Low Humidity
Gradient-Janus Wires for Simultaneous Fogwater Harvesting and Electricity Generation
Flexible photothermal-triggered MOF-composite nanofibers textures for freshwater harvesting with high efficiency an...
Highly Efficient Photothermal Icephobic/de-Icing MOF-Based Micro and Nanostructured Surface
Special fog harvesting mode on bioinspired hydrophilic dual-thread spider silk fiber
Robust Photothermal Icephobic Surface with Mechanical Durability of Multi-bioinspired Structures
A UV-Resistant Heterogeneous Wettability Patterned Surface
Efficient Atmospheric Water Harvesting of Superhydrophilic Photothermic Nanocapsule
Bioinspired Robust Helical-Groove Spindle-Knot Microfibers for Large-Scale Water Collection
Integrative Bioinspired Surface with Annular Pattern and Three Dimension Wettable Gradient for Enhancement of Fog ...
Liquid Confine-Induced Gradient-Janus Wires for Droplet Self-Propelling Performances in High Efficiency
High efficient fog-water harvesting via spontaneous swallowing mechanism
Robust photothermal superhydrophobic coatings with dual-size micro/ nano structure enhance anti-/de-icing and chemic...
Excellent dual-photothermal freshwater collector with high performance in large-scale evaporation
Underwater Fast Bubble Generating on Pitaya Thorn and Enhanced Biomimetic Gas Collection
Recent advances in biomimetic fog harvesting: focusing on higher efficiency and large-scale fabrication
Enhanced Fog Harvesting through Capillary-Assisted Rapid Transport of Droplet Confined in the Given Microchannel
Excellent fog harvesting performance of liquid-infused nano-textured 3D frame
Electromigration-triggered programmable droplet spreading
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