2018
DOI: 10.1021/acs.chemmater.8b00117
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Covalent Organic Framework with Frustrated Bonding Network for Enhanced Carbon Dioxide Storage

Abstract: Two-dimensional covalent organic framework (COF) materials can serve as excellent candidates for gas storage due to their high density of periodically arranged pores and channels, which can be tethered with functional groups. However, post-functionalization tends to disturb the structure of the COF; thus, it is attractive to develop synthetic approaches that generate built-in functionalities. Herein, we develop a new strategy for the construction of 2D-COFs with built-in, unreacted periodic bonding networks by… Show more

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Cited by 195 publications
(137 citation statements)
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“…Dichtel's and Bein's groups employed monomer‐truncation strategy to create defects for functionalization of COFs. Meanwhile, Yaghi's, Lotsch's, Loh's, and Dong's groups constructed defective COFs via precise controlling the reaction solvent and conditions. As a whole, introducing defects into COFs maybe a good method for enlarging applications and tailoring structures of COFs.…”
Section: Introductionmentioning
confidence: 99%
See 1 more Smart Citation
“…Dichtel's and Bein's groups employed monomer‐truncation strategy to create defects for functionalization of COFs. Meanwhile, Yaghi's, Lotsch's, Loh's, and Dong's groups constructed defective COFs via precise controlling the reaction solvent and conditions. As a whole, introducing defects into COFs maybe a good method for enlarging applications and tailoring structures of COFs.…”
Section: Introductionmentioning
confidence: 99%
“…Recently, Bein's group synthesized TpBD(NH 2 ) 2 containing nucleophilic amine functional group for postfunctionalization via two‐step method, which is difficult to obtain in chemically stable COFs by direct synthesis . Loh's group constructed TPE‐COF‐II with unreacted aldehyde groups in pore walls by carefully selecting reaction solvent . In addition, Yaghi's and Lotsch's groups obtained COFs with free amine groups, but have not been utilized for further postfunctionalization.…”
Section: Introductionmentioning
confidence: 99%
“…[27,[39][40][41] The self-condensation of C 2 -o rC 3 -symmetric monomers also yields microporous hexagonal COFs (Figure 3f,g). [26,27,42,43] The[ C 4 + C 4 ]g eometry diagram allows the direct construction of microporous tetragonal skeletons ( Figure 3h); [44] in this case,both units occupy the knots of the framework.…”
Section: Symmetric Topology Diagramsmentioning
confidence: 99%
“…Next, El-Kaderi et al synthesized 3-D COFs with high crystallinity by condensation reactions of tetrahedral tetra(4-dihydroxyborylphenyl) methane to create COF-102 with a surface area of 3,472 m 2 /g or tetra(4dihydroxyborylphenyl) silane to synthesize COF-103 with a surface area of 4,210 m 2 /g . COFs synthesized for CO 2 storage include azo (Ge et al, 2016), azine (Li Z. et al, 2014;Li et al, 2015), imine (Rabbani et al, 2013;Huang et al, 2015a,b;Zhai et al, 2017;Gao et al, 2018), and triazine linkers. The advent of reticular chemistry has inspired computational chemists to simulate COFs for the hope of better optimizing CO 2 capture (Zeng et al, 2016).…”
Section: Designing Cofs For Co 2 Adsorptionmentioning
confidence: 99%