MD3705G2 - Procedeu de obţinere a nanostructurilor tubulare de oxid de aluminiu pe suport de aluminiu - Google Patents

Procedeu de obţinere a nanostructurilor tubulare de oxid de aluminiu pe suport de aluminiu Download PDF

Info

Publication number
MD3705G2
MD3705G2 MDA20070305A MD20070305A MD3705G2 MD 3705 G2 MD3705 G2 MD 3705G2 MD A20070305 A MDA20070305 A MD A20070305A MD 20070305 A MD20070305 A MD 20070305A MD 3705 G2 MD3705 G2 MD 3705G2
Authority
MD
Moldova
Prior art keywords
aluminum
obtaining
oxide nanostructures
aluminum oxide
nanostructures
Prior art date
Application number
MDA20070305A
Other languages
English (en)
Russian (ru)
Other versions
MD3705F1 (ro
Inventor
Михаил ЕНАКИ
Ион ТИГИНЯНУ
Вячеслав УРСАКИ
Эдуард МОНАЙКО
Original Assignee
Институт Прикладной Физики Академии Наук Молдовы
Технический университет Молдовы
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 Институт Прикладной Физики Академии Наук Молдовы, Технический университет Молдовы filed Critical Институт Прикладной Физики Академии Наук Молдовы
Priority to MDA20070305A priority Critical patent/MD3705G2/ro
Publication of MD3705F1 publication Critical patent/MD3705F1/ro
Publication of MD3705G2 publication Critical patent/MD3705G2/ro

Links

Landscapes

  • Compounds Of Alkaline-Earth Elements, Aluminum Or Rare-Earth Metals (AREA)

Abstract

Invenţia se referă la tehnologia de producere a materialelor nanostructurate, în special la procedee de obţinere a nanostructurilor prin tratament electrochimic, care pot fi aplicate în micro-, opto- şi nanoelectronică.Procedeul de obţinere a nanostructurilor tubulare de oxid de aluminiu pe suport de aluminiu include decaparea electrochimică a unei folii de aluminiu într-un electrolit, totodată decaparea electrochimică se efectuează într-o soluţie apoasă de sulfat de nichel cu concentraţia de 0,5…3,0 g/100ml la temperatura de 15…40°C şi tensiunea curentului de 35…50 V, cu corodarea chimică ulterioară într-o soluţie apoasă de acid ortofosforic cu concentraţia de 5,0…15,0 g/100ml la temperatura de 20…50°C.
MDA20070305A 2007-11-06 2007-11-06 Procedeu de obţinere a nanostructurilor tubulare de oxid de aluminiu pe suport de aluminiu MD3705G2 (ro)

Priority Applications (1)

Application Number Priority Date Filing Date Title
MDA20070305A MD3705G2 (ro) 2007-11-06 2007-11-06 Procedeu de obţinere a nanostructurilor tubulare de oxid de aluminiu pe suport de aluminiu

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
MDA20070305A MD3705G2 (ro) 2007-11-06 2007-11-06 Procedeu de obţinere a nanostructurilor tubulare de oxid de aluminiu pe suport de aluminiu

Publications (2)

Publication Number Publication Date
MD3705F1 MD3705F1 (ro) 2008-09-30
MD3705G2 true MD3705G2 (ro) 2009-04-30

Family

ID=39812060

Family Applications (1)

Application Number Title Priority Date Filing Date
MDA20070305A MD3705G2 (ro) 2007-11-06 2007-11-06 Procedeu de obţinere a nanostructurilor tubulare de oxid de aluminiu pe suport de aluminiu

Country Status (1)

Country Link
MD (1) MD3705G2 (ro)

Non-Patent Citations (3)

* Cited by examiner, † Cited by third party
Title
He H. and Tao N. J. "Electrochemical fabrication of metal nanowires", In Encyclopedia of nanoscience and nanotechnology, edited by H. S. Nalwa, Volume X, American Scientific Publisher, 2003, p. 1-18 *
Huang G. S., Wu X. L., Kong F., Cheng Y. C., Siu G. G., and Chu P. K., "In situ fabrication of alumina nanotube arrays and photoluminescence", Appl. Phys. Lett. 89, 2006 *
Martin Ch.R., "Nanomaterials: A Membrane Based Synthetic Approach", Science, 266, 1994 *

Also Published As

Publication number Publication date
MD3705F1 (ro) 2008-09-30

Similar Documents

Publication Publication Date Title
Yang et al. Thickness-conversion ratio from titanium to TiO2 nanotube fabricated by anodization method
WO2013112268A3 (en) Etching of plastic using acidic solutions containing trivalent manganese
Kapusta-Kołodziej et al. Electrochemical growth of porous titanium dioxide in a glycerol-based electrolyte at different temperatures
WO2011063353A3 (en) Electrolyte solution and electropolishing methods
AR073866A1 (es) Un metodo para producir un sulfuro de metal de transicion con contenido de litio, su uso, un electrodo hecho mediante dicho uso y una bateria de ion de litio producida mediante dicho metodo.
RU2016118529A (ru) Получение оксида графена
IN2014DN10946A (ro)
WO2012130864A3 (en) Cell for depolarised electrodialysis of salt solutions
WO2017184760A3 (en) Methods, apparatuses, and electrodes for carbide-to-carbon conversion with nanostructured carbide chemical compounds
Tian et al. Study on titania nanotube arrays prepared by titanium anodization in NH4F/H2SO4 solution
Zhu et al. An efficient approach to control the morphology and the adhesion properties of anodized TiO2 nanotube arrays for improved photoconversion efficiency
Chen et al. Controlled anodic growth of TiO2 nanobelts and assessment of photoelectrochemical and photocatalytic properties
Wang et al. Rapid anodic oxidation of highly ordered TiO2 nanotube arrays
Mura et al. Effect of a galvanostatic treatment on the preparation of highly ordered TiO2 nanotubes
CN102277607B (zh) 一种孔径和厚度可控、通孔阳极氧化铝膜的制备方法
Wang et al. Preparation and formation mechanism of fast-growing ZrO2 nanotubes and slow-growing TiO2 nanotubes
WO2012071345A3 (en) Electrolyte solution and method of removing hydrogen from metals
CN104357887A (zh) 一种多孔氧化铝模板的制备方法
MD3705G2 (ro) Procedeu de obţinere a nanostructurilor tubulare de oxid de aluminiu pe suport de aluminiu
TW200730437A (en) Making method and apparatus for dissolving fluid of carbon dioxide gas and carbonated water
RU2015126375A (ru) Раствор электролита и электрохимические способы модификации поверхности
CN105926020B (zh) 一种用于油水分离的超亲水泡沫钛的制备方法
WO2006110822A3 (en) Carbon aerogel supported metal catalyst and solid electrolyte composite
Butail et al. Kinetics of titania nanotube formation by anodization of titanium films
WO2009035025A1 (ja) 電極触媒及びそれを用いた電極

Legal Events

Date Code Title Description
FG4A Patent for invention issued
KA4A Patent for invention lapsed due to non-payment of fees (with right of restoration)
MM4A Patent for invention definitely lapsed due to non-payment of fees