| Fabrication of Novel Superhydrophobic Surfaces and Water Droplet Bouncing Behavior - Part 1: Stable ZnO-PDMS Superhydrophobic Surface with Low Hysteresis Constructed Using ZnO Nanoparticles |
| Wang BB(王斌斌) ; Feng JT(冯江涛) ; Zhao YP(赵亚溥) ; Yu TX; Zhao YP
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发表期刊 | Journal of Adhesion Science and Technology
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| 2010
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卷号 | 24期号:15-16页码:2693-2705 |
ISSN | 0169-4243
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摘要 | A superhydrophobic surface has many advantages in micro/nanomechanical applications, such as low adhesion, low friction and high restitution coefficient, etc. In this paper, we introduce a novel and simple route to fabricate superhydrophobic surfaces using ZnO nanocrystals. First, tetrapod-like ZnO nanocrystals were prepared via a one-step, direct chemical vapor deposition (CVD) approach. The nanostructured ZnO material was characterized by scanning electron microscope (SEM) and X-ray diffraction (XRD) and the surface functionalized by aminopropyltriethoxysilane (APS) was found to be hydrophobic. Then the superhydrophobic surface was constructed by depositing uniformly ZnO hydrophobic nanoparticles (HNPs) on the Poly(dimethylsiloxane) (PDMS) film substrate. Water wettability study revealed a contact angle of 155.4 +/- 2 degrees for the superhydrophobic surface while about 110 degrees for pure smooth PDMS films. The hysteresis was quite low, only 3.1 +/- 0.3 degrees. Microscopic observations showed that the surface was covered by micro- and nano-scale ZnO particles. Compared to other approaches, this method is rather convenient and can be used to obtain a large area superhydrophobic surface. The high contact angle and low hysteresis could be attributed to the micro/nano structures of ZnO material; besides, the superhydrophobic property of the as-constructed ZnO-PDMS surface could be maintained for at least 6 months. (C) Koninklijke Brill NV, Leiden, 2010 |
关键词 | Superhydrophobic Surface
Contact Angle Hysteresis
Zno
Pdms
Surface Modifications
Line Tension
States
Resistance
Systems
Films
Size
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DOI | 10.1163/016942410X508244
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URL | 查看原文
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收录类别 | SCI
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语种 | 英语
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WOS记录号 | WOS:000284153000022
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关键词[WOS] | SELF-ASSEMBLED MONOLAYERS
; LINE TENSION
; STATES
; FILMS
; RESISTANCE
; SYSTEMS
; SIZE
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WOS研究方向 | Engineering
; Materials Science
; Mechanics
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WOS类目 | Engineering, Chemical
; Materials Science, Multidisciplinary
; Mechanics
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项目资助者 | National High-tech R&D Program of China (863 Program) [2007AA021803]
; National Basic Research Program of China (973 Program) [2007CB310500]
; National Natural Science Foundation of China (NSFC) [10772180, 60936001, 10721202]
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引用统计 |
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文献类型 | 期刊论文
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条目标识符 | http://dspace.imech.ac.cn/handle/311007/43445
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专题 | 非线性力学国家重点实验室
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通讯作者 | Zhao YP |
推荐引用方式 GB/T 7714 |
Wang BB,Feng JT,Zhao YP,et al. Fabrication of Novel Superhydrophobic Surfaces and Water Droplet Bouncing Behavior - Part 1: Stable ZnO-PDMS Superhydrophobic Surface with Low Hysteresis Constructed Using ZnO Nanoparticles[J]. Journal of Adhesion Science and Technology,2010,24,15-16,:2693-2705.
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APA |
王斌斌,冯江涛,赵亚溥,Yu TX,&Zhao YP.(2010).Fabrication of Novel Superhydrophobic Surfaces and Water Droplet Bouncing Behavior - Part 1: Stable ZnO-PDMS Superhydrophobic Surface with Low Hysteresis Constructed Using ZnO Nanoparticles.Journal of Adhesion Science and Technology,24(15-16),2693-2705.
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MLA |
王斌斌,et al."Fabrication of Novel Superhydrophobic Surfaces and Water Droplet Bouncing Behavior - Part 1: Stable ZnO-PDMS Superhydrophobic Surface with Low Hysteresis Constructed Using ZnO Nanoparticles".Journal of Adhesion Science and Technology 24.15-16(2010):2693-2705.
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