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Highly efficient Lewis acid catalytic activity of the tritylium ion at the node of a tensile organic framework

Tritylium salts have been used as Lewis acid catalysts in organic synthesis for a long time. In this work, we found that the Lewis acid catalytic activity of tritylium ions at the node of a tensile framework is significantly improved compared to that of the free tritylium salts. The tritylium-based...

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Autores principales: Zhao, Shuai, Zhang, Juhui, Zhai, Yongchang, Zou, Xiaoqin, Wang, Shaolei, Bian, Zheng, Cui, Fengchao, Zhu, Guangshan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8293798/
https://www.ncbi.nlm.nih.gov/pubmed/34349952
http://dx.doi.org/10.1039/d1sc02594e
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author Zhao, Shuai
Zhang, Juhui
Zhai, Yongchang
Zou, Xiaoqin
Wang, Shaolei
Bian, Zheng
Cui, Fengchao
Zhu, Guangshan
author_facet Zhao, Shuai
Zhang, Juhui
Zhai, Yongchang
Zou, Xiaoqin
Wang, Shaolei
Bian, Zheng
Cui, Fengchao
Zhu, Guangshan
author_sort Zhao, Shuai
collection PubMed
description Tritylium salts have been used as Lewis acid catalysts in organic synthesis for a long time. In this work, we found that the Lewis acid catalytic activity of tritylium ions at the node of a tensile framework is significantly improved compared to that of the free tritylium salts. The tritylium-based framework, PAF-201 (PAF, porous aromatic framework), was prepared by acidification of a semi-rigid triphenylcarbinol-based parent framework, PAF-200. When PAF-200 was alternately exposed to HCl and NH(3) gas, a fast allochroic cycle was observed due to repeated formation of tritylium species. Interestingly, the pseudo-first-order reaction rate of a Povarov model reaction catalyzed by PAF-201 as a Lewis acid was ∼3.7 times and ∼4.7 times as those of tritylium tetrafluoroborate and tri(4-biphenyl)carbonium tetrafluoroborate, respectively. Theoretical calculations revealed that the tritylium ion at the node of PAF-201 has a quasi-planar structure. The transformation of triphenylcarbinol in PAF-200 to tritylium in PAF-201 can make the framework taut, and the rebounding force toward the tetrahedral structure is stored. This is favorable for tritylium to activate the imine substrate along with a deformation of the quasi-plane to tetrahedron. PAF-201 could be easily recycled at least three times without evident loss of catalytic activity. This work presents the catalytic activity of the tritylium ion under stress.
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spelling pubmed-82937982021-08-03 Highly efficient Lewis acid catalytic activity of the tritylium ion at the node of a tensile organic framework Zhao, Shuai Zhang, Juhui Zhai, Yongchang Zou, Xiaoqin Wang, Shaolei Bian, Zheng Cui, Fengchao Zhu, Guangshan Chem Sci Chemistry Tritylium salts have been used as Lewis acid catalysts in organic synthesis for a long time. In this work, we found that the Lewis acid catalytic activity of tritylium ions at the node of a tensile framework is significantly improved compared to that of the free tritylium salts. The tritylium-based framework, PAF-201 (PAF, porous aromatic framework), was prepared by acidification of a semi-rigid triphenylcarbinol-based parent framework, PAF-200. When PAF-200 was alternately exposed to HCl and NH(3) gas, a fast allochroic cycle was observed due to repeated formation of tritylium species. Interestingly, the pseudo-first-order reaction rate of a Povarov model reaction catalyzed by PAF-201 as a Lewis acid was ∼3.7 times and ∼4.7 times as those of tritylium tetrafluoroborate and tri(4-biphenyl)carbonium tetrafluoroborate, respectively. Theoretical calculations revealed that the tritylium ion at the node of PAF-201 has a quasi-planar structure. The transformation of triphenylcarbinol in PAF-200 to tritylium in PAF-201 can make the framework taut, and the rebounding force toward the tetrahedral structure is stored. This is favorable for tritylium to activate the imine substrate along with a deformation of the quasi-plane to tetrahedron. PAF-201 could be easily recycled at least three times without evident loss of catalytic activity. This work presents the catalytic activity of the tritylium ion under stress. The Royal Society of Chemistry 2021-06-11 /pmc/articles/PMC8293798/ /pubmed/34349952 http://dx.doi.org/10.1039/d1sc02594e Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Zhao, Shuai
Zhang, Juhui
Zhai, Yongchang
Zou, Xiaoqin
Wang, Shaolei
Bian, Zheng
Cui, Fengchao
Zhu, Guangshan
Highly efficient Lewis acid catalytic activity of the tritylium ion at the node of a tensile organic framework
title Highly efficient Lewis acid catalytic activity of the tritylium ion at the node of a tensile organic framework
title_full Highly efficient Lewis acid catalytic activity of the tritylium ion at the node of a tensile organic framework
title_fullStr Highly efficient Lewis acid catalytic activity of the tritylium ion at the node of a tensile organic framework
title_full_unstemmed Highly efficient Lewis acid catalytic activity of the tritylium ion at the node of a tensile organic framework
title_short Highly efficient Lewis acid catalytic activity of the tritylium ion at the node of a tensile organic framework
title_sort highly efficient lewis acid catalytic activity of the tritylium ion at the node of a tensile organic framework
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8293798/
https://www.ncbi.nlm.nih.gov/pubmed/34349952
http://dx.doi.org/10.1039/d1sc02594e
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