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Shear rheology of graphene oxide dispersions

Francesco Del Giudice Orcid Logo, Amy Q Shen

Current Opinion in Chemical Engineering, Volume: 16, Pages: 23 - 30

Swansea University Author: Francesco Del Giudice Orcid Logo

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Abstract

Graphene oxide (G-O) is a chemically oxidized sheet of graphene. Owing to their functional groups, G-O sheets have found numerous applications in biomedical, electrical and material engineering. The flow properties of G-O dispersions, that is, the rheology, are intimately related to the material pro...

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Published in: Current Opinion in Chemical Engineering
ISSN: 2211-3398
Published: Elsevier BV 2017
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URI: https://cronfa.swan.ac.uk/Record/cronfa41014
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first_indexed 2018-07-13T19:35:36Z
last_indexed 2018-08-31T13:37:53Z
id cronfa41014
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spelling 2018-08-31T12:19:45.5515500 v2 41014 2018-07-13 Shear rheology of graphene oxide dispersions 742d483071479b44d7888e16166b1309 0000-0002-9414-6937 Francesco Del Giudice Francesco Del Giudice true false 2018-07-13 CHEG Graphene oxide (G-O) is a chemically oxidized sheet of graphene. Owing to their functional groups, G-O sheets have found numerous applications in biomedical, electrical and material engineering. The flow properties of G-O dispersions, that is, the rheology, are intimately related to the material processing and design of G-O based composites. In this review, we report recent findings on the shear rheology of both aqueous G-O dispersions and composite materials containing G-O sheets. We focus on aqueous G-O dispersions to understand interactions between G-O sheets. Applications related to materials science and technology are also presented. Journal Article Current Opinion in Chemical Engineering 16 23 30 Elsevier BV 2211-3398 31 5 2017 2017-05-31 10.1016/j.coche.2017.04.003 COLLEGE NANME Chemical Engineering COLLEGE CODE CHEG Swansea University 2018-08-31T12:19:45.5515500 2018-07-13T14:45:23.3189666 Faculty of Science and Engineering School of Engineering and Applied Sciences - Chemical Engineering Francesco Del Giudice 0000-0002-9414-6937 1 Amy Q Shen 2
title Shear rheology of graphene oxide dispersions
spellingShingle Shear rheology of graphene oxide dispersions
Francesco Del Giudice
title_short Shear rheology of graphene oxide dispersions
title_full Shear rheology of graphene oxide dispersions
title_fullStr Shear rheology of graphene oxide dispersions
title_full_unstemmed Shear rheology of graphene oxide dispersions
title_sort Shear rheology of graphene oxide dispersions
author_id_str_mv 742d483071479b44d7888e16166b1309
author_id_fullname_str_mv 742d483071479b44d7888e16166b1309_***_Francesco Del Giudice
author Francesco Del Giudice
author2 Francesco Del Giudice
Amy Q Shen
format Journal article
container_title Current Opinion in Chemical Engineering
container_volume 16
container_start_page 23
publishDate 2017
institution Swansea University
issn 2211-3398
doi_str_mv 10.1016/j.coche.2017.04.003
publisher Elsevier BV
college_str Faculty of Science and Engineering
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hierarchy_top_id facultyofscienceandengineering
hierarchy_top_title Faculty of Science and Engineering
hierarchy_parent_id facultyofscienceandengineering
hierarchy_parent_title Faculty of Science and Engineering
department_str School of Engineering and Applied Sciences - Chemical Engineering{{{_:::_}}}Faculty of Science and Engineering{{{_:::_}}}School of Engineering and Applied Sciences - Chemical Engineering
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description Graphene oxide (G-O) is a chemically oxidized sheet of graphene. Owing to their functional groups, G-O sheets have found numerous applications in biomedical, electrical and material engineering. The flow properties of G-O dispersions, that is, the rheology, are intimately related to the material processing and design of G-O based composites. In this review, we report recent findings on the shear rheology of both aqueous G-O dispersions and composite materials containing G-O sheets. We focus on aqueous G-O dispersions to understand interactions between G-O sheets. Applications related to materials science and technology are also presented.
published_date 2017-05-31T03:52:16Z
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score 11.014358