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Modular synthesis, host–guest complexation and solvation-controlled relaxation of nanohoops with donor–acceptor structures

Carbon nanohoops with donor–acceptor (D–A) structures are attractive electronic materials and biological fluorophores, but their synthesis is usually challenging. Moreover, the preparation of D–A nanohoop fluorophores exhibiting high fluorescence quantum yields beyond 500 nm remains a key challenge....

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Autores principales: Deng, Han, Guo, Zilong, Wang, Yaxin, Li, Ke, Zhou, Qin, Ge, Chang, Xu, Zhanqiang, Sato, Sota, Ma, Xiaonan, Sun, Zhe
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9728570/
https://www.ncbi.nlm.nih.gov/pubmed/36540830
http://dx.doi.org/10.1039/d2sc05804a
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author Deng, Han
Guo, Zilong
Wang, Yaxin
Li, Ke
Zhou, Qin
Ge, Chang
Xu, Zhanqiang
Sato, Sota
Ma, Xiaonan
Sun, Zhe
author_facet Deng, Han
Guo, Zilong
Wang, Yaxin
Li, Ke
Zhou, Qin
Ge, Chang
Xu, Zhanqiang
Sato, Sota
Ma, Xiaonan
Sun, Zhe
author_sort Deng, Han
collection PubMed
description Carbon nanohoops with donor–acceptor (D–A) structures are attractive electronic materials and biological fluorophores, but their synthesis is usually challenging. Moreover, the preparation of D–A nanohoop fluorophores exhibiting high fluorescence quantum yields beyond 500 nm remains a key challenge. This study presents a modular synthetic approach based on an efficient metal-free cyclocondensation reaction that readily produced nine congeners with D–A or donor–acceptor–donor′ (D–A–D′) structures, one of which is water-soluble. The tailored molecular design of nanohoops enabled a systematic and detailed study of their host–guest complexation with fullerene, optical properties, and charge transfer (CT) dynamics using X-ray crystallography, fluorescence titration, steady and ultrafast transient absorption spectroscopy, and theoretical calculations. The findings revealed intriguing physical properties associated with D–A motifs, such as tight binding with fullerene, moderate fluorescence quantum yields (37–67%) beyond 540 nm, and unique solvation-controlled CT relaxation of D–A–D′ nanohoops, where two CT states (D–A and A–D′) can be effectively tuned by solvation, resulting in dramatically changed relaxation pathways in different solvents.
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spelling pubmed-97285702022-12-19 Modular synthesis, host–guest complexation and solvation-controlled relaxation of nanohoops with donor–acceptor structures Deng, Han Guo, Zilong Wang, Yaxin Li, Ke Zhou, Qin Ge, Chang Xu, Zhanqiang Sato, Sota Ma, Xiaonan Sun, Zhe Chem Sci Chemistry Carbon nanohoops with donor–acceptor (D–A) structures are attractive electronic materials and biological fluorophores, but their synthesis is usually challenging. Moreover, the preparation of D–A nanohoop fluorophores exhibiting high fluorescence quantum yields beyond 500 nm remains a key challenge. This study presents a modular synthetic approach based on an efficient metal-free cyclocondensation reaction that readily produced nine congeners with D–A or donor–acceptor–donor′ (D–A–D′) structures, one of which is water-soluble. The tailored molecular design of nanohoops enabled a systematic and detailed study of their host–guest complexation with fullerene, optical properties, and charge transfer (CT) dynamics using X-ray crystallography, fluorescence titration, steady and ultrafast transient absorption spectroscopy, and theoretical calculations. The findings revealed intriguing physical properties associated with D–A motifs, such as tight binding with fullerene, moderate fluorescence quantum yields (37–67%) beyond 540 nm, and unique solvation-controlled CT relaxation of D–A–D′ nanohoops, where two CT states (D–A and A–D′) can be effectively tuned by solvation, resulting in dramatically changed relaxation pathways in different solvents. The Royal Society of Chemistry 2022-11-10 /pmc/articles/PMC9728570/ /pubmed/36540830 http://dx.doi.org/10.1039/d2sc05804a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Deng, Han
Guo, Zilong
Wang, Yaxin
Li, Ke
Zhou, Qin
Ge, Chang
Xu, Zhanqiang
Sato, Sota
Ma, Xiaonan
Sun, Zhe
Modular synthesis, host–guest complexation and solvation-controlled relaxation of nanohoops with donor–acceptor structures
title Modular synthesis, host–guest complexation and solvation-controlled relaxation of nanohoops with donor–acceptor structures
title_full Modular synthesis, host–guest complexation and solvation-controlled relaxation of nanohoops with donor–acceptor structures
title_fullStr Modular synthesis, host–guest complexation and solvation-controlled relaxation of nanohoops with donor–acceptor structures
title_full_unstemmed Modular synthesis, host–guest complexation and solvation-controlled relaxation of nanohoops with donor–acceptor structures
title_short Modular synthesis, host–guest complexation and solvation-controlled relaxation of nanohoops with donor–acceptor structures
title_sort modular synthesis, host–guest complexation and solvation-controlled relaxation of nanohoops with donor–acceptor structures
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9728570/
https://www.ncbi.nlm.nih.gov/pubmed/36540830
http://dx.doi.org/10.1039/d2sc05804a
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