TWO-LAYER NANOSTRUCTURED Al2O3 MEMBRANES, SYNTHESIZED BY ELECTROCHEMICAL ANODIZATION IN OXALIC ACID ELECTROLYTE
Technological methods for the formation of 73-216 μm thick porous two-layer Al2O3 membranes with ~ 55 nm pores diameters by a two-sided through anodization in oxalic acid electrolyte and subsequent bipolar anodization were designed. High shape stability and crack resistance after high-temperature (...
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Tver State University
2013-11-01
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Series: | Физико-химические аспекты изучения кластеров, наноструктур и наноматериалов |
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Online Access: | http://physchemaspects.ru/archives/2013/%D0%A4%D0%A5-2013%20%D0%A8%D0%B8%D0%BC%D0%B0%D0%BD%D0%BE%D0%B2%D0%B8%D1%87%20%D0%94%D0%9B%201.pdf |
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doaj-faf4aa6fc7b14b319574091507c42ea42020-11-25T02:36:27ZrusTver State UniversityФизико-химические аспекты изучения кластеров, наноструктур и наноматериалов2226-44422658-43602013-11-015376380TWO-LAYER NANOSTRUCTURED Al2O3 MEMBRANES, SYNTHESIZED BY ELECTROCHEMICAL ANODIZATION IN OXALIC ACID ELECTROLYTED.L. Shimanovich0Belarusian State UniversityTechnological methods for the formation of 73-216 μm thick porous two-layer Al2O3 membranes with ~ 55 nm pores diameters by a two-sided through anodization in oxalic acid electrolyte and subsequent bipolar anodization were designed. High shape stability and crack resistance after high-temperature ( >500°C) treatments, ~ 20-23 W/m·K thermal conductivity, ~ 7,2 - 7,4 relative dielectric constant were obtained.http://physchemaspects.ru/archives/2013/%D0%A4%D0%A5-2013%20%D0%A8%D0%B8%D0%BC%D0%B0%D0%BD%D0%BE%D0%B2%D0%B8%D1%87%20%D0%94%D0%9B%201.pdfaluminumelectrochemical anodizationporous aluminabarrier layerbipolar anodizationmembranenanostructured material |
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Russian |
format |
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sources |
DOAJ |
author |
D.L. Shimanovich |
spellingShingle |
D.L. Shimanovich TWO-LAYER NANOSTRUCTURED Al2O3 MEMBRANES, SYNTHESIZED BY ELECTROCHEMICAL ANODIZATION IN OXALIC ACID ELECTROLYTE Физико-химические аспекты изучения кластеров, наноструктур и наноматериалов aluminum electrochemical anodization porous alumina barrier layer bipolar anodization membrane nanostructured material |
author_facet |
D.L. Shimanovich |
author_sort |
D.L. Shimanovich |
title |
TWO-LAYER NANOSTRUCTURED Al2O3 MEMBRANES, SYNTHESIZED BY ELECTROCHEMICAL ANODIZATION IN OXALIC ACID ELECTROLYTE |
title_short |
TWO-LAYER NANOSTRUCTURED Al2O3 MEMBRANES, SYNTHESIZED BY ELECTROCHEMICAL ANODIZATION IN OXALIC ACID ELECTROLYTE |
title_full |
TWO-LAYER NANOSTRUCTURED Al2O3 MEMBRANES, SYNTHESIZED BY ELECTROCHEMICAL ANODIZATION IN OXALIC ACID ELECTROLYTE |
title_fullStr |
TWO-LAYER NANOSTRUCTURED Al2O3 MEMBRANES, SYNTHESIZED BY ELECTROCHEMICAL ANODIZATION IN OXALIC ACID ELECTROLYTE |
title_full_unstemmed |
TWO-LAYER NANOSTRUCTURED Al2O3 MEMBRANES, SYNTHESIZED BY ELECTROCHEMICAL ANODIZATION IN OXALIC ACID ELECTROLYTE |
title_sort |
two-layer nanostructured al2o3 membranes, synthesized by electrochemical anodization in oxalic acid electrolyte |
publisher |
Tver State University |
series |
Физико-химические аспекты изучения кластеров, наноструктур и наноматериалов |
issn |
2226-4442 2658-4360 |
publishDate |
2013-11-01 |
description |
Technological methods for the formation of 73-216 μm thick porous two-layer Al2O3 membranes with ~ 55 nm pores diameters by a two-sided through anodization in oxalic acid electrolyte and subsequent bipolar anodization were designed. High shape stability and crack resistance after high-temperature ( >500°C) treatments, ~ 20-23 W/m·K thermal conductivity, ~ 7,2 - 7,4 relative dielectric constant were obtained. |
topic |
aluminum electrochemical anodization porous alumina barrier layer bipolar anodization membrane nanostructured material |
url |
http://physchemaspects.ru/archives/2013/%D0%A4%D0%A5-2013%20%D0%A8%D0%B8%D0%BC%D0%B0%D0%BD%D0%BE%D0%B2%D0%B8%D1%87%20%D0%94%D0%9B%201.pdf |
work_keys_str_mv |
AT dlshimanovich twolayernanostructuredal2o3membranessynthesizedbyelectrochemicalanodizationinoxalicacidelectrolyte |
_version_ |
1724800036273913856 |