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  4. Boron-Functionalized Graphene Oxide-Organic Frameworks for Highly Efficient CO2 Capture
 
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Boron-Functionalized Graphene Oxide-Organic Frameworks for Highly Efficient CO2 Capture

Journal
Chemistry - An Asian Journal
Journal Volume
12
Journal Issue
3
Pages
283-288
Date Issued
2017
Author(s)
Haque E.
Islam M.M.
Pourazadi E.
Sarkar S.
Harris A.T.
Minett A.I.
Yanmaz E.
Alshehri S.M.
Ide Y.
Wu K.C.-W.  
Kaneti Y.V.
Yamauchi Y.
Hossain M.S.A.
DOI
10.1002/asia.201601442
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/408867
URL
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85010878207&doi=10.1002%2fasia.201601442&partnerID=40&md5=9658e2486a8cc4aad7c7df1c51841284
Abstract
The capture and storage of CO2 have been suggested as an effective strategy to reduce the global emissions of greenhouse gases. Hence, in recent years, many studies have been carried out to develop highly efficient materials for capturing CO2. Until today, different types of porous materials, such as zeolites, porous carbons, N/B-doped porous carbons or metal-organic frameworks (MOFs), have been studied for CO2 capture. Herein, the CO2 capture performance of new hybrid materials, graphene-organic frameworks (GOFs) is described. The GOFs were synthesized under mild conditions through a solvothermal process using graphene oxide (GO) as a starting material and benzene 1,4-diboronic acid as an organic linker. Interestingly, the obtained GOF shows a high surface area (506 m2 g?1) which is around 11 times higher than that of GO (46 m2 g?1), indicating that the organic modification on the GO surface is an effective way of preparing a porous structure using GO. Our synthetic approach is quite simple, facile, and fast, compared with many other approaches reported previously. The synthesized GOF exhibits a very large CO2 capacity of 4.95 mmol g?1 at 298 K (1 bar), which is higher those of other porous materials or carbon-based materials, along with an excellent CO2/N2 selectivity of 48.8. ? 2017 Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim
Subjects
boron
carbon dioxide fixation
graphene
mesoporous materials
Type
journal article

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