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DOI | 10.1039/c4ta04090b |
Controllable wettability and adhesion on bioinspired multifunctional TiO2 nanostructure surfaces for liquid manipulation | |
Huang, Jianying1; Lai, Yuekun1,2,3; Wang, Luning4; Li, Shuhui1; Ge, Mingzheng1; Zhang, Keqin1; Fuchs, Harald2,3; Chi, Lifeng2,3,5 | |
通讯作者 | Lai, Yuekun |
来源期刊 | JOURNAL OF MATERIALS CHEMISTRY A
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ISSN | 2050-7488 |
EISSN | 2050-7496 |
出版年 | 2014 |
卷号 | 2期号:43页码:18531-18538 |
英文摘要 | Hierarchical surfaces with specific topographical morphology and chemical components can be found on many living creatures in nature. They offer special wettability and adhesion (sliding, sticky or patterned superhydrophobic surfaces), a functional platform for microfluidic management and other biological functions. Inspired by their precise arrangement of structures and surface components, we described a facile one-step electrochemical technique to create dual-scale hierarchical anatase TiO2 structures with the combination of pinecone-like micro-particle upper layers and dense-stacked nanoparticle bottom layers in a large scale. The as-prepared TiO2 films display environment-responsive wettability with good dynamical stability. Extremely high contrast of adhesion (2.5-170 mu N) can be realized by simply adjusting the physical structures (anodizing voltage and electrolyte concentration dependent) to control the solid-liquid contact state (from "Rose" to "Lotus" state). In addition, erasable and rewritable patterned superhydrophobic TiO2 films were constructed for a versatile platform for microfluidic management. In a proof-of-concept study, robust super-antiwetting films for on-demand droplet separation, mixing and transportation under an ambient atmosphere or an underwater environment, and patterned superhydrophobic surfaces for liquid self-assembling or anti-counterfeiting marks were demonstrated. |
类型 | Article |
语种 | 英语 |
国家 | Peoples R China ; Germany |
收录类别 | SCI-E |
WOS记录号 | WOS:000346850800002 |
WOS关键词 | SUPERHYDROPHILIC-SUPERHYDROPHOBIC PATTERNS ; CONTACT-ANGLE HYSTERESIS ; SELF-CLEANING PROPERTIES ; TITANIUM-OXIDE NANOTUBE ; SUPEROLEOPHOBIC SURFACES ; PHOTOCATALYTIC ACTIVITY ; OIL/WATER SEPARATION ; EXTREME WETTABILITY ; WATER STRIDERS ; DESERT BEETLE |
WOS类目 | Chemistry, Physical ; Energy & Fuels ; Materials Science, Multidisciplinary |
WOS研究方向 | Chemistry ; Energy & Fuels ; Materials Science |
资源类型 | 期刊论文 |
条目标识符 | http://119.78.100.177/qdio/handle/2XILL650/183562 |
作者单位 | 1.Soochow Univ, Natl Engn Lab Modern Silk, Coll Text & Clothing Engn, Suzhou 215123, Peoples R China; 2.Univ Munster, Phys Inst, D-48149 Munster, Germany; 3.Univ Munster, Ctr Nanotechnol CeNTech, D-48149 Munster, Germany; 4.Univ Sci & Technol Beijing, Sch Mat Sci & Engn, Beijing 100083, Peoples R China; 5.Soochow Univ, Inst Funct Nano & Soft Mat FUNSOM, Suzhou 215123, Peoples R China |
推荐引用方式 GB/T 7714 | Huang, Jianying,Lai, Yuekun,Wang, Luning,et al. Controllable wettability and adhesion on bioinspired multifunctional TiO2 nanostructure surfaces for liquid manipulation[J],2014,2(43):18531-18538. |
APA | Huang, Jianying.,Lai, Yuekun.,Wang, Luning.,Li, Shuhui.,Ge, Mingzheng.,...&Chi, Lifeng.(2014).Controllable wettability and adhesion on bioinspired multifunctional TiO2 nanostructure surfaces for liquid manipulation.JOURNAL OF MATERIALS CHEMISTRY A,2(43),18531-18538. |
MLA | Huang, Jianying,et al."Controllable wettability and adhesion on bioinspired multifunctional TiO2 nanostructure surfaces for liquid manipulation".JOURNAL OF MATERIALS CHEMISTRY A 2.43(2014):18531-18538. |
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