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Bottom-up synthesis of two-dimensional carbon with vertically aligned ordered micropores for ultrafast nanofiltrationopen access

Authors
Kim, C.Koh, D.-Y.Lee, Y.Choi, J.Cho, Hae SungChoi, M.
Issue Date
Feb-2023
Publisher
NLM (Medline)
Citation
Science advances, v.9, no.6, pp eade7871
Journal Title
Science advances
Volume
9
Number
6
Start Page
eade7871
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/69546
DOI
10.1126/sciadv.ade7871
ISSN
2375-2548
2375-2548
Abstract
Two-dimensional (2D) carbon materials perforated with uniform micropores are considered ideal building blocks to fabricate advanced membranes for molecular separation and energy storage devices with high rate capabilities. However, creating high-density uniform micropores in 2D carbon using conventional perforation methods remains a formidable challenge. Here, we report a zeolite-templated bottom-up synthesis of ordered microporous 2D carbon. Through rational analysis of 255 zeolite structures, we find that the IWV zeolite having large 2D microporous channels and aluminosilicate compositions can serve as an ideal template for carbon replication. The resulting carbon is made of an extremely thin polyaromatic backbone and contains well-defined vertically aligned micropores (0.69 nm in diameter). Its areal pore density (0.70 nm-2) is considerably greater than that of porous graphene (<0.05 nm-2) prepared using top-down perforation methods. The isoporous membrane fabricated by assembling the exfoliated 2D carbon nanosheets exhibits outstanding permeance and molecular sieving properties in organic solvent nanofiltration.
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자연과학대학 (화학과)
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