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Graphene Nanoribbon/Carbon Nanotube Hybrid Hydrogel: Rheology and Membrane for Ultrafast Molecular Diafiltration

Authors
Kim, J.Y.Choi, Y.Choi, J.Kim, Y.-J.Kang, J.Kim, J.P.Kim, J.H.Kwon, O.Kim, S.-S.Kim, D.W.
Issue Date
Mar-2022
Publisher
American Chemical Society
Keywords
diafiltration; graphene nanoribbon; hybrid coating; hydrogel; membrane
Citation
ACS Applied Materials and Interfaces, v.14, no.9, pp 11779 - 11788
Pages
10
Journal Title
ACS Applied Materials and Interfaces
Volume
14
Number
9
Start Page
11779
End Page
11788
URI
https://yscholarhub.yonsei.ac.kr/handle/2021.sw.yonsei/6572
DOI
10.1021/acsami.1c24733
ISSN
1944-8244
1944-8252
Abstract
Hybrids based on carbon nanotubes (CNTs) and graphene nanoribbons (GNRs) are expected to have synergistic effects for various applications. Herein, we demonstrate a simple one-pot synthesis of a CNT/GNR hybrid material by adjusting the oxidation and unzipping conditions of multi-walled CNTs (MWNTs). The MWNT/graphene oxide nanoribbon (GONR) hybrid was dispersed in various solvents, particularly showing the hybrid hydrogel phase in water at a concentration of 40 mg mL-1. The MWNT/GONR hydrogel exhibited shear-thinning behavior, which can be beneficial for coating a large-area MWNT/GONR layer onto a polymeric porous support by using a scalable slot-die coater. The MWNT/GONR membrane exhibited an outstanding nanofiltration performance, with a molecular weight cutoff of 300 Da and a dye/salt diafiltration performance with a separation factor of 1000 and a water flux of 367.8 LMH, far surpassing the upper bound of diafiltration performance of the existing membranes. © 2022 American Chemical Society
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