- Prof. Dr. Yongmei Zheng
- School of Chemistry,Beihang University
- Welcome to zhengyongmei.polymer.cn
- Visits:773823
Links
- ACS Nano: High-efficiency fog collector
- International Society of Bionic Engneering
- Yongmei Zheng Researches
- m.714744.com
- www.rheology.cn
- www.chemshow.cn
- www.chembbs.com.cn
Contact Info.
- Address:北京市昌平區高教園南三街9號北京航空航天大學實驗七號樓409
- Zip:102206
- Tel:---
- Fax:
- Email:zhengym@buaa.edu.cn
Current Location :> Home > Publications > Text
Wet-Induced Fabrication of Heterogeneous Hump-on-String Fibers.
writer:C. Song , R. Du and Y. Zheng*
keywords:Bioinspired
source:期刊
specific source:Materials 2015, 8, 4249-4257
Issue time:2015年
Inspired by the high adhesiveness of the electrospun fiber, we propose a method
to fabricate multi-scale heterogeneous hump-on-string fiber via the adsorption of nanoparticles,
the NPCTi which is the hydrolysate of titanium tetrachloride (TiCl4) and the nanoparticles
containing Al (NPCAl) which is produced by the hydrolysis of Trimethylaluminium
(TMA, Al(CH3)3). The water collection efficiency of the fibers can be easily controlled via
changing not only the size of the beads but also the ratio of the Ti and Al. In addition,
we introduce a computational fluid dynamics (CFD) simulation to show the pressure
distribution of on the surface of the fibers, which gives another explanation regarding the
keywords:Bioinspired
source:期刊
specific source:Materials 2015, 8, 4249-4257
Issue time:2015年
Inspired by the high adhesiveness of the electrospun fiber, we propose a method
to fabricate multi-scale heterogeneous hump-on-string fiber via the adsorption of nanoparticles,
the NPCTi which is the hydrolysate of titanium tetrachloride (TiCl4) and the nanoparticles
containing Al (NPCAl) which is produced by the hydrolysis of Trimethylaluminium
(TMA, Al(CH3)3). The water collection efficiency of the fibers can be easily controlled via
changing not only the size of the beads but also the ratio of the Ti and Al. In addition,
we introduce a computational fluid dynamics (CFD) simulation to show the pressure
distribution of on the surface of the fibers, which gives another explanation regarding the
high water collection efficiency.