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Scaffold-Induced Diketopyrrolopyrrole Molecular Stacks in a Covalent Organic Framework

[Image: see text] In recent years, covalent organic frameworks (COFs) have attracted considerable attention due to their crystalline and porous nature, which positions them as intriguing candidates for diverse applications such as catalysis, sensing, or optoelectronics. The incorporation of dyes or...

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Autores principales: Rager, Sabrina, Jakowetz, Andreas C., Gole, Bappaditya, Beuerle, Florian, Medina, Dana D., Bein, Thomas
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2019
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6485259/
https://www.ncbi.nlm.nih.gov/pubmed/31043765
http://dx.doi.org/10.1021/acs.chemmater.8b02882
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author Rager, Sabrina
Jakowetz, Andreas C.
Gole, Bappaditya
Beuerle, Florian
Medina, Dana D.
Bein, Thomas
author_facet Rager, Sabrina
Jakowetz, Andreas C.
Gole, Bappaditya
Beuerle, Florian
Medina, Dana D.
Bein, Thomas
author_sort Rager, Sabrina
collection PubMed
description [Image: see text] In recent years, covalent organic frameworks (COFs) have attracted considerable attention due to their crystalline and porous nature, which positions them as intriguing candidates for diverse applications such as catalysis, sensing, or optoelectronics. The incorporation of dyes or semiconducting moieties into a rigid two-dimensional COF can offer emergent features such as enhanced light harvesting or charge transport. However, this approach can be challenging when dealing with dye molecules that exhibit a large aromatic backbone, since the steric demand of solubilizing side chains also needs to be integrated into the framework. Here, we report the successful synthesis of DPP2-HHTP-COF consisting of diketopyrrolopyrrole (DPP) diboronic acid and hexahydroxytriphenylene (HHTP) building blocks. The well-known boronate ester coupling motif guides the formation of a planar and rigid backbone and long-range molecular DPP stacks, resulting in a highly crystalline and porous material. DPP2-HHTP-COF exhibits excellent optical properties including strong absorption over the visible spectral range, broad emission into the NIR and a singlet lifetime of over 5 ns attributed to the formation of molecular stacks with J-type interactions between the DPP subcomponents in the COF. Electrical conductivity measurements of crystalline DPP2-HHTP-COF pellets revealed conductivity values of up to 10(–6) S cm(–1).
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spelling pubmed-64852592019-04-29 Scaffold-Induced Diketopyrrolopyrrole Molecular Stacks in a Covalent Organic Framework Rager, Sabrina Jakowetz, Andreas C. Gole, Bappaditya Beuerle, Florian Medina, Dana D. Bein, Thomas Chem Mater [Image: see text] In recent years, covalent organic frameworks (COFs) have attracted considerable attention due to their crystalline and porous nature, which positions them as intriguing candidates for diverse applications such as catalysis, sensing, or optoelectronics. The incorporation of dyes or semiconducting moieties into a rigid two-dimensional COF can offer emergent features such as enhanced light harvesting or charge transport. However, this approach can be challenging when dealing with dye molecules that exhibit a large aromatic backbone, since the steric demand of solubilizing side chains also needs to be integrated into the framework. Here, we report the successful synthesis of DPP2-HHTP-COF consisting of diketopyrrolopyrrole (DPP) diboronic acid and hexahydroxytriphenylene (HHTP) building blocks. The well-known boronate ester coupling motif guides the formation of a planar and rigid backbone and long-range molecular DPP stacks, resulting in a highly crystalline and porous material. DPP2-HHTP-COF exhibits excellent optical properties including strong absorption over the visible spectral range, broad emission into the NIR and a singlet lifetime of over 5 ns attributed to the formation of molecular stacks with J-type interactions between the DPP subcomponents in the COF. Electrical conductivity measurements of crystalline DPP2-HHTP-COF pellets revealed conductivity values of up to 10(–6) S cm(–1). American Chemical Society 2019-02-06 2019-04-23 /pmc/articles/PMC6485259/ /pubmed/31043765 http://dx.doi.org/10.1021/acs.chemmater.8b02882 Text en Copyright © 2019 American Chemical Society This is an open access article published under a Creative Commons Non-Commercial No Derivative Works (CC-BY-NC-ND) Attribution License (http://pubs.acs.org/page/policy/authorchoice_ccbyncnd_termsofuse.html) , which permits copying and redistribution of the article, and creation of adaptations, all for non-commercial purposes.
spellingShingle Rager, Sabrina
Jakowetz, Andreas C.
Gole, Bappaditya
Beuerle, Florian
Medina, Dana D.
Bein, Thomas
Scaffold-Induced Diketopyrrolopyrrole Molecular Stacks in a Covalent Organic Framework
title Scaffold-Induced Diketopyrrolopyrrole Molecular Stacks in a Covalent Organic Framework
title_full Scaffold-Induced Diketopyrrolopyrrole Molecular Stacks in a Covalent Organic Framework
title_fullStr Scaffold-Induced Diketopyrrolopyrrole Molecular Stacks in a Covalent Organic Framework
title_full_unstemmed Scaffold-Induced Diketopyrrolopyrrole Molecular Stacks in a Covalent Organic Framework
title_short Scaffold-Induced Diketopyrrolopyrrole Molecular Stacks in a Covalent Organic Framework
title_sort scaffold-induced diketopyrrolopyrrole molecular stacks in a covalent organic framework
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6485259/
https://www.ncbi.nlm.nih.gov/pubmed/31043765
http://dx.doi.org/10.1021/acs.chemmater.8b02882
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