scholarly journals A CO2-gated anodic aluminum oxide based nanocomposite membrane for de-emulsification

Nanoscale ◽  
2020 ◽  
Vol 12 (41) ◽  
pp. 21316-21324
Author(s):  
Xia Huang ◽  
Hatice Mutlu ◽  
Patrick Theato

A polymer-grafted through-hole anodic aluminum oxide (AAO) membrane with carbon dioxide (CO2)-responsive controlled permeability for water flux control and emulsion separation was demonstrated.

Author(s):  
Xia Huang ◽  
Hatice Mutlu ◽  
Patrick Théato

Abstract Anodic aluminum oxide (AAO) templates have been intensively investigated during the past decades and have meanwhile been widely applied through both sacrificial and non-sacrificial pathways. In numerous non-sacrificial applications, the AAO membrane is maintained as part of the obtained composite materials; hence, the template structure and topography determine to a great extent the potential applications. Through-hole isotropic AAO features nanochannels that promote transfer of matter, while anisotropic AAO with barrier layer exhibits nanocavities suitable as independent and homogenous containers. By combining the two kinds of AAO membranes with diverse organic and inorganic materials through physical interactions or chemical bonds, AAO composites are designed and applied in versatile fields such as catalysis, drug release platform, separation membrane, optical appliances, sensors, cell culture, energy, and electronic devices. Therefore, within this review, a perspective on exhilarating prospect for complementary advancement on AAO composites both in preparation and application is provided.


2014 ◽  
Vol 136 (4) ◽  
Author(s):  
Hiromasa Teshima ◽  
Kohei Kojima ◽  
Yang Ju

Through-hole anodic aluminum oxide (AAO) was fabricated by two steps anodization method. The pore diameter of the AAO was 40 nm. Cu nanowire array was prepared using the fabricated AAO as a template by electrochemical deposition. The mechanical and electrical performances of Cu nanowire surface fastener (NSF) were realized by the interconnection of Cu nanowire arrays. The shear and normal bonding strengths for the Cu NSF with 40 nm diameter nanowires were 3.38 × 10−3 and 2.46 × 10−3 N/cm2, respectively, and the parasitic resistance of it was approximately 22.5 Ω · cm2.


2007 ◽  
Vol 10 (12) ◽  
pp. C69 ◽  
Author(s):  
Ching-Jung Yang ◽  
Shih-Wei Liang ◽  
Pu-Wei Wu ◽  
Chih Chen ◽  
Jia-Min Shieh

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