Movatterモバイル変換


[0]ホーム

URL:


US20140202868A1 - System and method of anodized aluminum oxide nano-porous membrane preparation - Google Patents

System and method of anodized aluminum oxide nano-porous membrane preparation
Download PDF

Info

Publication number
US20140202868A1
US20140202868A1US13/748,166US201313748166AUS2014202868A1US 20140202868 A1US20140202868 A1US 20140202868A1US 201313748166 AUS201313748166 AUS 201313748166AUS 2014202868 A1US2014202868 A1US 2014202868A1
Authority
US
United States
Prior art keywords
substrate
aluminum oxide
membrane
anodized aluminum
preparation
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Abandoned
Application number
US13/748,166
Inventor
Nitin Afzulpurkar
Ajab Khan Kasi
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
ASIAN INSTITUTE OF TECHNOLOGY
Original Assignee
ASIAN INSTITUTE OF TECHNOLOGY
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by ASIAN INSTITUTE OF TECHNOLOGYfiledCriticalASIAN INSTITUTE OF TECHNOLOGY
Priority to US13/748,166priorityCriticalpatent/US20140202868A1/en
Assigned to ASIAN INSTITUTE OF TECHNOLOGYreassignmentASIAN INSTITUTE OF TECHNOLOGYASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: AFZULPURKAR, NITIN, KASI, AJAB KHAN
Publication of US20140202868A1publicationCriticalpatent/US20140202868A1/en
Abandonedlegal-statusCriticalCurrent

Links

Images

Classifications

Definitions

Landscapes

Abstract

A system and method for preparation of nano-porous membrane using anodized aluminium oxide and the membrane/film/thin lamina produced thereof. The system comprises a template forming device that comprises of two rolls provided with one or plurality of projections wherein the Al sheet is passed through the said rolls that are rotatable in opposite direction with respect to each other wherein in operation as the Al sheet is passed through the said rolls, the said projections of the rolls punch depressions to the predetermined depth in the said sheet wherein the depth of the depression is governed by the height of the projections. A method for preparation of anodized aluminum oxide nano-porous membrane comprising electro polishing of Al substrate; first step anodization; chemical etching of alumina; second stage anodization; etching Al for separation of alumina and barrier layer removal or voltage pulse detachment for barrier layer removal and detachment of membrane from Al substrate.

Description

Claims (14)

We claim:
1. A system for preparation of anodized aluminum oxide nano-porous membrane comprising
a template forming device that comprises of two rolls provided with one or plurality of projections wherein the Al sheet is passed through the said rolls that are rotatable in opposite direction with respect to each other wherein
in operation as the Al sheet is passed through the said rolls, the said projections of the rolls punch depressions to the predetermined depth in the said sheet wherein the depth of the depression is governed by the height of the projections.
2. A system for preparation of anodized aluminum oxide nano-porous membrane as claimed inclaim 1 wherein the punched lines with depression are created in horizontal and vertical manner wherein part of the Al sheet is extended to be used for connection with the electrode in the anodization process wherein the pattern of the punched lines with horizontal and vertical combination is designed according to the dimension of the membrane required.
3. A method for preparation of anodized aluminum oxide nano-porous membrane comprising
(i) electro polishing of Al substrate
(ii) first step anodization;
(iii) chemical etching of alumina;
(iv) second stage anodization;
(v) etching Al for separation of alumina and barrier layer removal or voltage pulse detachment for barrier layer removal and detachment of membrane from Al substrate.
4. A method for preparation of anodized aluminum oxide nano-porous membrane as claimed inclaim 3 wherein the process of electro polishing of Al sheet comprises steps of:
(i) placing the said Al sheet with the punched depressions in the mixture of perchloric acid and ethanol respectively wherein the ratio of the perchloric acid and ethanol is in the range of 1:3 to 1:5 by volume wherein purity of ethanol is in the range of 99%-99.9% and that of perchloric acid is in the range of 69-72%;
(ii) applying potential at a temperature less than 10° C. wherein the potential is in the range of 10 to 20 V;
(iii) applying potential for 3 to 10 min depending on the surface roughness.
5. A method for preparation of anodized aluminum oxide nano-porous membrane as claimed inclaim 3 wherein the process of the first stage anodization comprises steps of:
a. selecting electrolyte from either of oxalic acid, phosphoric acid, sulfuric acid and malunic acid wherein the concentration of the said acid depends on the pore size;
b. using oxalic acid as electrolyte;
c. applying a potential in the range of 35 to 45V wherein process time depends on the membrane thickness, it can range from 1 h to 48 h.
6. A method for preparation of anodized aluminum oxide nano-porous membrane as claimed inclaim 3 wherein the process of the chemical etching of the anodized aluminum oxide substrate comprises step of:
performing chemical etching in chromic acid and phosphoric acid wherein the temperature is in the range of 65-80° C. wherein preferably 6 wt % phosphoric acid is 6 wt % and chromic acid is 2 wt % wherein purity of chromic acid is 99% and purity of phosphoric acid is 85%.
7. A method for preparation of anodized aluminum oxide nano-porous membrane as claimed inclaim 3 wherein the second stage anodization process comprises steps of
a. selecting electrolyte from either of oxalic acid, phosphoric acid, sulfuric acid and malunic acid wherein the concentration of the said acid depends on the pore size;
b. using oxalic acid as electrolyte;
c. applying a potential in the range of 35 to 45V wherein process time depends on the membrane thickness, it can range from 1 h to 48 h.
8. A method for preparation of anodized aluminum oxide nano-porous membrane as claimed inclaim 3 wherein cracks at edges of the substrate wherein aluminum (Al) surfaces are substantially perpendicular to each other are utilized effectively as a passage to reach the chemical at the Al substrate surface to etch the AAO from that surface.
9. A method for preparation of anodized aluminum oxide nano-porous membrane as claimed inclaim 3 wherein the substrate is entirely immersed in saturated mercuric chloride during chemical etching process
wherein the immersion of the entire surface in the mercuric chloride results in the AAO layer detachment from each of the faces of the substrate enabling each of the substrate surface except surface used as electrode to yield an AAO layer after chemical etching.
10. A method for preparation of anodized aluminum oxide nano-porous membrane as claimed inclaim 3 wherein the barrier layer is removed comprising steps of:
etching Al in saturated mercuric chloride so as to separate anodized aluminum oxide from Al;
placing of AAO in 5 wt % to 6 wt % Phosphoric acid for about 35 to 40 min at 31° C. to 32° C. for etching of BL.
11. A method for preparation of anodized aluminum oxide nano-porous membrane as claimed inclaim 3 wherein the barrier layer is removed using voltage pulse method that comprises steps of:
placing the said substrate in perchloric acid and ethanol with volume ratio in the range of 1:3 to 1:5 respectively;
applying a voltage pulse from 45 to 50 V for 3 to 5 seconds that causes to detach AAO from Al and remove BL.
12. A method for preparation of anodized aluminum oxide nano-porous membrane as claimed inclaim 3 wherein preparation of two dimensional as well as three-dimensional membrane simultaneously in the same process step using a single substrate is carried out wherein
the Al substrate (50) in the form of a block provided with electrode end (51);
one or plurality of holes (52) are drilled in the said block (50), there are five surfaces available in the said substrate (50); the front and back surface (53 and54) respectively wherein holes are drilled; top and bottom surface (55 and56) respectively and the side surface (57);
the said Al substrate (drilled block50) is processed using the method of electro polishing, first step anodization, chemical etching of the anodized Al, second stage anodization, etching for separation of membrane and barrier layer removal;
each of the said surfaces of the said substrate (50) result in the production of the two dimensional membranes wherein the drilled holes (52) in the said substrate (50) yield the three dimensional membranes in the form of a tube/s (52a).
13. A method for preparation of anodized aluminum oxide nano-porous membrane as claimed inclaim 3 wherein substrate is selected from 99.56% pure Al or 99.999% pure Al.
14. The anodized aluminum oxide nano-porous membrane with pore diameter in the range of 30 to 40 nm, and inter-pore distance in the range of 90 to 100 nm.
US13/748,1662013-01-232013-01-23System and method of anodized aluminum oxide nano-porous membrane preparationAbandonedUS20140202868A1 (en)

Priority Applications (1)

Application NumberPriority DateFiling DateTitle
US13/748,166US20140202868A1 (en)2013-01-232013-01-23System and method of anodized aluminum oxide nano-porous membrane preparation

Applications Claiming Priority (1)

Application NumberPriority DateFiling DateTitle
US13/748,166US20140202868A1 (en)2013-01-232013-01-23System and method of anodized aluminum oxide nano-porous membrane preparation

Publications (1)

Publication NumberPublication Date
US20140202868A1true US20140202868A1 (en)2014-07-24

Family

ID=51206877

Family Applications (1)

Application NumberTitlePriority DateFiling Date
US13/748,166AbandonedUS20140202868A1 (en)2013-01-232013-01-23System and method of anodized aluminum oxide nano-porous membrane preparation

Country Status (1)

CountryLink
US (1)US20140202868A1 (en)

Cited By (6)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
KR20170005259A (en)*2015-07-022017-01-12고려대학교 산학협력단Method for manufactiring anodic metal oxide nanoporous template
WO2017142607A1 (en)*2015-12-042017-08-24The University Of Florida Research Foundation, Inc.Fabrication of thermally stable nanocavities and particle-in-cavity nanostructures
CN111203213A (en)*2020-03-212020-05-29王永芝High-efficiency preferential oxidation catalyst and preparation method thereof
US20210335552A1 (en)*2017-07-102021-10-28Murata Manufacturing Co., Ltd.Substrates employing surface-area amplification, for use in fabricating capacitive elements and other devices
US11595953B2 (en)2015-11-102023-02-28Interdigital Patent Holdings, Inc.Downlink control channel design and signaling for beamformed systems
CN117619883A (en)*2023-12-012024-03-01北京理工大学Three-dimensional brick composite material and technological preparation method thereof

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
Sulka, G.D., "Nanostructured Materials in Electrochemistry", Edited by Ali Eftekhari, Chapter 1, 2008.*

Cited By (11)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
KR20170005259A (en)*2015-07-022017-01-12고려대학교 산학협력단Method for manufactiring anodic metal oxide nanoporous template
KR101701314B1 (en)*2015-07-022017-02-02고려대학교 산학협력단Method for manufactiring anodic metal oxide nanoporous template
US10156018B2 (en)*2015-07-022018-12-18Korea University Research And Business FoundationMethod for manufacturing anodic metal oxide nanoporous templates
US11595953B2 (en)2015-11-102023-02-28Interdigital Patent Holdings, Inc.Downlink control channel design and signaling for beamformed systems
US11997696B2 (en)2015-11-102024-05-28Interdigital Patent Holdings, Inc.Downlink control channel design and signaling for beamformed systems
WO2017142607A1 (en)*2015-12-042017-08-24The University Of Florida Research Foundation, Inc.Fabrication of thermally stable nanocavities and particle-in-cavity nanostructures
US10400322B2 (en)2015-12-042019-09-03The University Of Florida Research Foundation, Inc.Fabrication of thermally stable nanocavities and particle-in-cavity nanostructures
US20210335552A1 (en)*2017-07-102021-10-28Murata Manufacturing Co., Ltd.Substrates employing surface-area amplification, for use in fabricating capacitive elements and other devices
US11538637B2 (en)*2017-07-102022-12-27Murata Manufacturing Co., Ltd.Substrates employing surface-area amplification, for use in fabricating capacitive elements and other devices
CN111203213A (en)*2020-03-212020-05-29王永芝High-efficiency preferential oxidation catalyst and preparation method thereof
CN117619883A (en)*2023-12-012024-03-01北京理工大学Three-dimensional brick composite material and technological preparation method thereof

Similar Documents

PublicationPublication DateTitle
US20140202868A1 (en)System and method of anodized aluminum oxide nano-porous membrane preparation
Yanagishita et al.High-throughput fabrication process for highly ordered through-hole porous alumina membranes using two-layer anodization
Zaraska et al.The effect of electrolyte change on the morphology and degree of nanopore order of porous alumina formed by two-step anodization
CN102041540A (en)Anodic aluminum oxide template with three-dimensional gradual-changed hole array nanostructure and preparation method of anodic aluminum oxide template
KR101896266B1 (en)Ionic diode membrane comprising tapered nanopore and method for preparing thereof
Chen et al.Fabrication of nanopores and nanoslits with feature sizes down to 5 nm by wet etching method
CN1995480B (en)Preparation process for obtaining highly ordered alumina mold
WO2014020939A1 (en)Anodic oxidation porous alumina and method for producing same, and through-hole alumina membrane and method for producing same
KR102329300B1 (en)Filtration membrane for trapping microparticles, method for manufacturing same, porous membrane, and method for manufacturing same
Schurink et al.Highly uniform sieving structure by corner lithography and silicon wet etching
Yue et al.Electrochemical synthesis and hydrophilicity of micro-pored aluminum foil
JP6760640B2 (en) Manufacturing method of anodic oxide porous alumina
CN104213174A (en)Method for expanding size of nano hole of anodic aluminum oxide template
Fan et al.Formation mechanism of petal-like micropattern and nanofibers in porous anodic alumina
Hasan et al.Anodic aluminum oxide (AAO) to AAO bonding and their application for fabrication of 3D microchannel
CN103276438A (en)Method for forming nano-scale porous film layer on surface of pure aluminum
RU2545887C2 (en)Method of production of flexible nanoporous composite membrane with cellular structure of anode metal oxide or alloy
EP1675670B1 (en)Nanoporous filter or support membrane and method for production therof
KR20180040743A (en)Ionic diode membrane comprising branched nanopore and method for preparing thereof
KR20110024892A (en) Semiconductor nanowire array and manufacturing method
CN102764920B (en)Processing method for double-side outward-expanded metal micro-hole array
KR101234222B1 (en) Nano template and its manufacturing method
LvResearch progress in formation mechanism of anodizing aluminum oxide
KR20130081367A (en)Manufacturing methods of nanoporous structure by high temperature anodization of al
CN104609363B (en)The preparation method of the strong hydrophobic fexible film of a kind of big area

Legal Events

DateCodeTitleDescription
ASAssignment

Owner name:ASIAN INSTITUTE OF TECHNOLOGY, THAILAND

Free format text:ASSIGNMENT OF ASSIGNORS INTEREST;ASSIGNORS:AFZULPURKAR, NITIN;KASI, AJAB KHAN;REEL/FRAME:029691/0730

Effective date:20130121

STCBInformation on status: application discontinuation

Free format text:ABANDONED -- FAILURE TO RESPOND TO AN OFFICE ACTION


[8]ページ先頭

©2009-2025 Movatter.jp