Construction of a new 2D coral-like covalent organic framework as CuI nanoparticles carrier for the preparation of diverse triazoles

In this work, a novel two-dimensional coral-like covalent organic framework (COF) with hydrazone linkages containing pyridine dicarbohydrazide moieties namely PDC-COF was designed and developed through a condensation reaction between the tri(4-formyl phenoxy) cyanurate (TFPC) and 2,6-dimethylpyridin...

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Main Authors: Morteza Torabi, Mohammad Ali Zolfigol, Meysam Yarie
Format: Article
Language:English
Published: Elsevier 2023-10-01
Series:Arabian Journal of Chemistry
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S187853522300552X
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author Morteza Torabi
Mohammad Ali Zolfigol
Meysam Yarie
author_facet Morteza Torabi
Mohammad Ali Zolfigol
Meysam Yarie
author_sort Morteza Torabi
collection DOAJ
description In this work, a novel two-dimensional coral-like covalent organic framework (COF) with hydrazone linkages containing pyridine dicarbohydrazide moieties namely PDC-COF was designed and developed through a condensation reaction between the tri(4-formyl phenoxy) cyanurate (TFPC) and 2,6-dimethylpyridine-3,5-dicarbohydrazide (DMPDC) without applying inert atmosphere and using of any acidic catalyst. PDC-COF applied as carrier for CuI nanoparticles for construction of a robust heterogeneous catalyst (PDC-COF/CuI). This catalyst shows high thermal stability (up to 500 °C), good porosity (≃50 m2 g−1), acceptable crystalline structure with coral-like morphology. Accordingly, the obtained data revealed that the synthesized PDC-COF/CuI is highly active heterogeneous catalyst for the preparation of diverse triazoles by using different starting materials under green and mild reaction conditions. In addition, in comparison with the reported data in the literature, all of the prepared compounds have good yields (71–93%) and relatively short reaction times (45 min–15 h). Moreover, PDC-COF/CuI shows excellent stability and reusability (up to 6 times) without any significant decreases in its catalytic performance.
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spelling doaj.art-3fd45624fca94715a83ee227d995a1532023-09-07T04:43:24ZengElsevierArabian Journal of Chemistry1878-53522023-10-011610105090Construction of a new 2D coral-like covalent organic framework as CuI nanoparticles carrier for the preparation of diverse triazolesMorteza Torabi0Mohammad Ali Zolfigol1Meysam Yarie2Department of Organic Chemistry, Faculty of Chemistry, Bu‐Ali Sina University, Hamedan, IranCorresponding authors.; Department of Organic Chemistry, Faculty of Chemistry, Bu‐Ali Sina University, Hamedan, IranCorresponding authors.; Department of Organic Chemistry, Faculty of Chemistry, Bu‐Ali Sina University, Hamedan, IranIn this work, a novel two-dimensional coral-like covalent organic framework (COF) with hydrazone linkages containing pyridine dicarbohydrazide moieties namely PDC-COF was designed and developed through a condensation reaction between the tri(4-formyl phenoxy) cyanurate (TFPC) and 2,6-dimethylpyridine-3,5-dicarbohydrazide (DMPDC) without applying inert atmosphere and using of any acidic catalyst. PDC-COF applied as carrier for CuI nanoparticles for construction of a robust heterogeneous catalyst (PDC-COF/CuI). This catalyst shows high thermal stability (up to 500 °C), good porosity (≃50 m2 g−1), acceptable crystalline structure with coral-like morphology. Accordingly, the obtained data revealed that the synthesized PDC-COF/CuI is highly active heterogeneous catalyst for the preparation of diverse triazoles by using different starting materials under green and mild reaction conditions. In addition, in comparison with the reported data in the literature, all of the prepared compounds have good yields (71–93%) and relatively short reaction times (45 min–15 h). Moreover, PDC-COF/CuI shows excellent stability and reusability (up to 6 times) without any significant decreases in its catalytic performance.http://www.sciencedirect.com/science/article/pii/S187853522300552XCovalent organic frameworkHydrazone linkageTriazoleHeterogeneous catalyst
spellingShingle Morteza Torabi
Mohammad Ali Zolfigol
Meysam Yarie
Construction of a new 2D coral-like covalent organic framework as CuI nanoparticles carrier for the preparation of diverse triazoles
Arabian Journal of Chemistry
Covalent organic framework
Hydrazone linkage
Triazole
Heterogeneous catalyst
title Construction of a new 2D coral-like covalent organic framework as CuI nanoparticles carrier for the preparation of diverse triazoles
title_full Construction of a new 2D coral-like covalent organic framework as CuI nanoparticles carrier for the preparation of diverse triazoles
title_fullStr Construction of a new 2D coral-like covalent organic framework as CuI nanoparticles carrier for the preparation of diverse triazoles
title_full_unstemmed Construction of a new 2D coral-like covalent organic framework as CuI nanoparticles carrier for the preparation of diverse triazoles
title_short Construction of a new 2D coral-like covalent organic framework as CuI nanoparticles carrier for the preparation of diverse triazoles
title_sort construction of a new 2d coral like covalent organic framework as cui nanoparticles carrier for the preparation of diverse triazoles
topic Covalent organic framework
Hydrazone linkage
Triazole
Heterogeneous catalyst
url http://www.sciencedirect.com/science/article/pii/S187853522300552X
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AT mohammadalizolfigol constructionofanew2dcorallikecovalentorganicframeworkascuinanoparticlescarrierforthepreparationofdiversetriazoles
AT meysamyarie constructionofanew2dcorallikecovalentorganicframeworkascuinanoparticlescarrierforthepreparationofdiversetriazoles