The effect of ethylene glycol on pore arrangement of anodic aluminium oxide prepared by hard anodization

Publication Date:
2018-03-07
Publisher:
Royal Society
Electronic ISSN:
2054-5703
Topics:
Natural Sciences in General
Keywords:
materials science, chemical engineering, chemical physics
Published by:
_version_ 1836398832877830144
autor Guo, Y., Zhang, L., Han, M., Wang, X., Xie, J., Deng, L.
beschreibung The influence of the addition of ethylene glycol (EG) on the pore self-ordering process in anodic aluminium oxide (AAO) membranes prepared by hard anodization (HA) was investigated. It was illustrated that EG has a substantial effect on the pore arrangement of AAO, and it was found that a smaller pore size can be obtained with an EG concentration reaching 20 wt% in aqueous electrolyte. The number of estimated defects of AAO increases significantly with an increase in EG concentration to 50 wt%. Excellent ordering of pores was realized when the samples were anodized in the 30 wt%-EG-containing aqueous electrolyte.
citation_standardnr 6197510
datenlieferant ipn_articles
feed_id 220702
feed_publisher Royal Society
feed_publisher_url http://royalsocietypublishing.org/
insertion_date 2018-03-07
journaleissn 2054-5703
publikationsjahr_anzeige 2018
publikationsjahr_facette 2018
publikationsjahr_intervall 7984:2015-2019
publikationsjahr_sort 2018
publisher Royal Society
quelle Royal Society Open Science
relation http://rsos.royalsocietypublishing.org/cgi/content/short/5/3/171412?rss=1
schlagwort materials science, chemical engineering, chemical physics
search_space articles
shingle_author_1 Guo, Y., Zhang, L., Han, M., Wang, X., Xie, J., Deng, L.
shingle_author_2 Guo, Y., Zhang, L., Han, M., Wang, X., Xie, J., Deng, L.
shingle_author_3 Guo, Y., Zhang, L., Han, M., Wang, X., Xie, J., Deng, L.
shingle_author_4 Guo, Y., Zhang, L., Han, M., Wang, X., Xie, J., Deng, L.
shingle_catch_all_1 The effect of ethylene glycol on pore arrangement of anodic aluminium oxide prepared by hard anodization
materials science, chemical engineering, chemical physics
The influence of the addition of ethylene glycol (EG) on the pore self-ordering process in anodic aluminium oxide (AAO) membranes prepared by hard anodization (HA) was investigated. It was illustrated that EG has a substantial effect on the pore arrangement of AAO, and it was found that a smaller pore size can be obtained with an EG concentration reaching 20 wt% in aqueous electrolyte. The number of estimated defects of AAO increases significantly with an increase in EG concentration to 50 wt%. Excellent ordering of pores was realized when the samples were anodized in the 30 wt%-EG-containing aqueous electrolyte.
Guo, Y., Zhang, L., Han, M., Wang, X., Xie, J., Deng, L.
Royal Society
2054-5703
20545703
shingle_catch_all_2 The effect of ethylene glycol on pore arrangement of anodic aluminium oxide prepared by hard anodization
materials science, chemical engineering, chemical physics
The influence of the addition of ethylene glycol (EG) on the pore self-ordering process in anodic aluminium oxide (AAO) membranes prepared by hard anodization (HA) was investigated. It was illustrated that EG has a substantial effect on the pore arrangement of AAO, and it was found that a smaller pore size can be obtained with an EG concentration reaching 20 wt% in aqueous electrolyte. The number of estimated defects of AAO increases significantly with an increase in EG concentration to 50 wt%. Excellent ordering of pores was realized when the samples were anodized in the 30 wt%-EG-containing aqueous electrolyte.
Guo, Y., Zhang, L., Han, M., Wang, X., Xie, J., Deng, L.
Royal Society
2054-5703
20545703
shingle_catch_all_3 The effect of ethylene glycol on pore arrangement of anodic aluminium oxide prepared by hard anodization
materials science, chemical engineering, chemical physics
The influence of the addition of ethylene glycol (EG) on the pore self-ordering process in anodic aluminium oxide (AAO) membranes prepared by hard anodization (HA) was investigated. It was illustrated that EG has a substantial effect on the pore arrangement of AAO, and it was found that a smaller pore size can be obtained with an EG concentration reaching 20 wt% in aqueous electrolyte. The number of estimated defects of AAO increases significantly with an increase in EG concentration to 50 wt%. Excellent ordering of pores was realized when the samples were anodized in the 30 wt%-EG-containing aqueous electrolyte.
Guo, Y., Zhang, L., Han, M., Wang, X., Xie, J., Deng, L.
Royal Society
2054-5703
20545703
shingle_catch_all_4 The effect of ethylene glycol on pore arrangement of anodic aluminium oxide prepared by hard anodization
materials science, chemical engineering, chemical physics
The influence of the addition of ethylene glycol (EG) on the pore self-ordering process in anodic aluminium oxide (AAO) membranes prepared by hard anodization (HA) was investigated. It was illustrated that EG has a substantial effect on the pore arrangement of AAO, and it was found that a smaller pore size can be obtained with an EG concentration reaching 20 wt% in aqueous electrolyte. The number of estimated defects of AAO increases significantly with an increase in EG concentration to 50 wt%. Excellent ordering of pores was realized when the samples were anodized in the 30 wt%-EG-containing aqueous electrolyte.
Guo, Y., Zhang, L., Han, M., Wang, X., Xie, J., Deng, L.
Royal Society
2054-5703
20545703
shingle_title_1 The effect of ethylene glycol on pore arrangement of anodic aluminium oxide prepared by hard anodization
shingle_title_2 The effect of ethylene glycol on pore arrangement of anodic aluminium oxide prepared by hard anodization
shingle_title_3 The effect of ethylene glycol on pore arrangement of anodic aluminium oxide prepared by hard anodization
shingle_title_4 The effect of ethylene glycol on pore arrangement of anodic aluminium oxide prepared by hard anodization
timestamp 2025-06-30T23:33:21.373Z
titel The effect of ethylene glycol on pore arrangement of anodic aluminium oxide prepared by hard anodization
titel_suche The effect of ethylene glycol on pore arrangement of anodic aluminium oxide prepared by hard anodization
topic TA-TD
uid ipn_articles_6197510