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Silicon-supported aluminum oxide membranes with ultrahigh aspect ratio nanopores

Authors
Jang, BumjinChen, Xiang-ZhongSiegfried, RetoMontero Moreno, Josep M.Özkale, BernaNielsch, KorneliusNelson, Bradley J.Pané, Salvador
Issue Date
Oct-2015
Publisher
Royal Society of Chemistry
Citation
RSC Advances, v.5, no.114, pp 94283 - 94289
Pages
7
Indexed
SCIE
SCOPUS
Journal Title
RSC Advances
Volume
5
Number
114
Start Page
94283
End Page
94289
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/113270
DOI
10.1039/c5ra20170e
ISSN
2046-2069
Abstract
AAO membranes become essential for fabricating nano-building blocks. However, the integration of these nano-building blocks in complex machinery is still challenging, mainly due to the fragility of these membranes. In this work, we overcome this drawback by developing a new integrative process which enables the support of a highly-ordered nanoporous membrane onto a mechanically robust substrate such as silicon. The fabrication of supported AAO (SAAO) membranes is achieved by transferring an AAO layer onto a Si substrate via a Au/Au compressive bonding process. Two types of AAOs were prepared for this bonding process to demonstrate the universality of our technology: mild-anodized AAO (MA-AAO) and pulse-anodized AAO (PA-AAO). We also demonstrate that the newly developed SAAO membranes are suitable for electrodeposition of nanostructures. Problems such as membrane handling or electrolyte leakage occurring in conventional AAO membranes are avoided, so that Ni nanostructures with well-controlled dimensions and uniform lengths are obtained. The high-aspect ratio Ni nanostructures have the potential to be used in various applications, such as biosensing and energy storage. © The Royal Society of Chemistry 2015.
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Jang, Bumjin
ERICA 공학대학 (DEPARTMENT OF ROBOT ENGINEERING)
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