Collegial effect of carbonaceous hybrid fillers in mixed matrix membrane development

One of the major limitations in mixed matrix membrane (MMM) development is difficulty in achieving homogenous filler dispersion in polymer continuous phase. In the past, fillers are often functionalized to improve their dispersion properties in polymer matrix. However, this method is laborious and c...

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Main Authors: Murugiah, P.S., Oh, P.C., Lau, K.K.
Format: Article
Published: 2019
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85058438285&doi=10.1016%2fj.reactfunctpolym.2018.11.012&partnerID=40&md5=43237ff841b01e442bcbc8dd8cb29212
http://eprints.utp.edu.my/22156/
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spelling my.utp.eprints.221562019-02-28T05:49:41Z Collegial effect of carbonaceous hybrid fillers in mixed matrix membrane development Murugiah, P.S. Oh, P.C. Lau, K.K. One of the major limitations in mixed matrix membrane (MMM) development is difficulty in achieving homogenous filler dispersion in polymer continuous phase. In the past, fillers are often functionalized to improve their dispersion properties in polymer matrix. However, this method is laborious and could deteriorate the intrinsic properties of the native filler particles. Instead of functionalizing the filler, a technique of integrating hybrid fillers for dispersion enhancement is attempted in this work. Accordingly, two different carbonaceous nanofillers, namely carbon nanofiber (CNF) and graphene oxide (GO) were synergistically incorporated into glassy polymer to synthesize a novel MMM for CO2/CH4 separation. The collegial effect of combining two nanofillers was found to render homogenous filler dispersion quality especially at 2 wt CNF/3 wt GO (2C/3G) and 3 wt CNF/2 wt GO (3C/2G) filler loadings. The CNF particles dispersed between GO nanosheets and inhibited the restacking of GO, whilst the strong steric effect imposed by GO nanosheets improved the dispersion of CNF particles in the polymer matrix. Upon the addition of hybrid fillers, thermal and mechanical properties of MMMs were enhanced. The optimum gas separation performance was found at 2C/3G filler loading with CO2/CH4 selectivity of 59.70 and CO2 permeability of 62.32 Barrer. This revealed a notable enhancement of 712 and 23 in CO2/CH4 selectivity and CO2 permeability, respectively. © 2018 Elsevier B.V. 2019 Article NonPeerReviewed https://www.scopus.com/inward/record.uri?eid=2-s2.0-85058438285&doi=10.1016%2fj.reactfunctpolym.2018.11.012&partnerID=40&md5=43237ff841b01e442bcbc8dd8cb29212 Murugiah, P.S. and Oh, P.C. and Lau, K.K. (2019) Collegial effect of carbonaceous hybrid fillers in mixed matrix membrane development. Reactive and Functional Polymers, 135 . pp. 8-15. http://eprints.utp.edu.my/22156/
institution Universiti Teknologi Petronas
building UTP Resource Centre
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Petronas
content_source UTP Institutional Repository
url_provider http://eprints.utp.edu.my/
description One of the major limitations in mixed matrix membrane (MMM) development is difficulty in achieving homogenous filler dispersion in polymer continuous phase. In the past, fillers are often functionalized to improve their dispersion properties in polymer matrix. However, this method is laborious and could deteriorate the intrinsic properties of the native filler particles. Instead of functionalizing the filler, a technique of integrating hybrid fillers for dispersion enhancement is attempted in this work. Accordingly, two different carbonaceous nanofillers, namely carbon nanofiber (CNF) and graphene oxide (GO) were synergistically incorporated into glassy polymer to synthesize a novel MMM for CO2/CH4 separation. The collegial effect of combining two nanofillers was found to render homogenous filler dispersion quality especially at 2 wt CNF/3 wt GO (2C/3G) and 3 wt CNF/2 wt GO (3C/2G) filler loadings. The CNF particles dispersed between GO nanosheets and inhibited the restacking of GO, whilst the strong steric effect imposed by GO nanosheets improved the dispersion of CNF particles in the polymer matrix. Upon the addition of hybrid fillers, thermal and mechanical properties of MMMs were enhanced. The optimum gas separation performance was found at 2C/3G filler loading with CO2/CH4 selectivity of 59.70 and CO2 permeability of 62.32 Barrer. This revealed a notable enhancement of 712 and 23 in CO2/CH4 selectivity and CO2 permeability, respectively. © 2018 Elsevier B.V.
format Article
author Murugiah, P.S.
Oh, P.C.
Lau, K.K.
spellingShingle Murugiah, P.S.
Oh, P.C.
Lau, K.K.
Collegial effect of carbonaceous hybrid fillers in mixed matrix membrane development
author_facet Murugiah, P.S.
Oh, P.C.
Lau, K.K.
author_sort Murugiah, P.S.
title Collegial effect of carbonaceous hybrid fillers in mixed matrix membrane development
title_short Collegial effect of carbonaceous hybrid fillers in mixed matrix membrane development
title_full Collegial effect of carbonaceous hybrid fillers in mixed matrix membrane development
title_fullStr Collegial effect of carbonaceous hybrid fillers in mixed matrix membrane development
title_full_unstemmed Collegial effect of carbonaceous hybrid fillers in mixed matrix membrane development
title_sort collegial effect of carbonaceous hybrid fillers in mixed matrix membrane development
publishDate 2019
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85058438285&doi=10.1016%2fj.reactfunctpolym.2018.11.012&partnerID=40&md5=43237ff841b01e442bcbc8dd8cb29212
http://eprints.utp.edu.my/22156/
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score 13.214268