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Cyclic tris-[5]helicenes with single and triple twisted Möbius topologies and Möbius aromaticity

A number of singly (180°) twisted, largely single-stranded and thus conformationally rather fragile, Möbius molecules have been synthesized within the last 15 years, which are aromatic with 4n electrons, thus violating the Hückel rule. Annulenes with significantly higher twist (e.g. 540°) that retai...

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Autores principales: Naulet, Guillaume, Sturm, Ludmilla, Robert, Antoine, Dechambenoit, Pierre, Röhricht, Fynn, Herges, Rainer, Bock, Harald, Durola, Fabien
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Royal Society of Chemistry 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6335628/
https://www.ncbi.nlm.nih.gov/pubmed/30746118
http://dx.doi.org/10.1039/c8sc02877j
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author Naulet, Guillaume
Sturm, Ludmilla
Robert, Antoine
Dechambenoit, Pierre
Röhricht, Fynn
Herges, Rainer
Bock, Harald
Durola, Fabien
author_facet Naulet, Guillaume
Sturm, Ludmilla
Robert, Antoine
Dechambenoit, Pierre
Röhricht, Fynn
Herges, Rainer
Bock, Harald
Durola, Fabien
author_sort Naulet, Guillaume
collection PubMed
description A number of singly (180°) twisted, largely single-stranded and thus conformationally rather fragile, Möbius molecules have been synthesized within the last 15 years, which are aromatic with 4n electrons, thus violating the Hückel rule. Annulenes with significantly higher twist (e.g. 540°) that retain a full cyclic conjugation path have been elusive, mainly because of the high strain and loss of orbital overlap. Recently, a topological strategy was devised to project the “twist” into “writhe”, thus reducing the strain. However, orbital overlap was still severely reduced within the flexible building blocks. We now present a single and a triple twisted annulene with fully conjugated peripheries. They are unique in their pronounced band shape and conformational robustness as they are made up of three fully kata-condensed [5]helicene fragments. The triple twisted molecule exhibits a strong diatropic ring current in the outer periphery, even though the π system includes 4n electrons. The diatropic current is counterbalanced by a paratropic current in the σ system, resulting in no net manifestation of macrocyclic aromaticity. The key step of the synthesis of both Möbius compounds is a Perkin condensation of complementary bifunctional bismaleates leading to a flexible macrocycle containing alternating benzene and biphenyl fragments. Subsequent photocyclization yields a separable mixture of rigid diastereomeric tris-helicene macrocycles of the above topologies.
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spelling pubmed-63356282019-02-11 Cyclic tris-[5]helicenes with single and triple twisted Möbius topologies and Möbius aromaticity Naulet, Guillaume Sturm, Ludmilla Robert, Antoine Dechambenoit, Pierre Röhricht, Fynn Herges, Rainer Bock, Harald Durola, Fabien Chem Sci Chemistry A number of singly (180°) twisted, largely single-stranded and thus conformationally rather fragile, Möbius molecules have been synthesized within the last 15 years, which are aromatic with 4n electrons, thus violating the Hückel rule. Annulenes with significantly higher twist (e.g. 540°) that retain a full cyclic conjugation path have been elusive, mainly because of the high strain and loss of orbital overlap. Recently, a topological strategy was devised to project the “twist” into “writhe”, thus reducing the strain. However, orbital overlap was still severely reduced within the flexible building blocks. We now present a single and a triple twisted annulene with fully conjugated peripheries. They are unique in their pronounced band shape and conformational robustness as they are made up of three fully kata-condensed [5]helicene fragments. The triple twisted molecule exhibits a strong diatropic ring current in the outer periphery, even though the π system includes 4n electrons. The diatropic current is counterbalanced by a paratropic current in the σ system, resulting in no net manifestation of macrocyclic aromaticity. The key step of the synthesis of both Möbius compounds is a Perkin condensation of complementary bifunctional bismaleates leading to a flexible macrocycle containing alternating benzene and biphenyl fragments. Subsequent photocyclization yields a separable mixture of rigid diastereomeric tris-helicene macrocycles of the above topologies. Royal Society of Chemistry 2018-11-16 /pmc/articles/PMC6335628/ /pubmed/30746118 http://dx.doi.org/10.1039/c8sc02877j Text en This journal is © The Royal Society of Chemistry 2018 http://creativecommons.org/licenses/by-nc/3.0/ This article is freely available. This article is licensed under a Creative Commons Attribution Non Commercial 3.0 Unported Licence (CC BY-NC 3.0)
spellingShingle Chemistry
Naulet, Guillaume
Sturm, Ludmilla
Robert, Antoine
Dechambenoit, Pierre
Röhricht, Fynn
Herges, Rainer
Bock, Harald
Durola, Fabien
Cyclic tris-[5]helicenes with single and triple twisted Möbius topologies and Möbius aromaticity
title Cyclic tris-[5]helicenes with single and triple twisted Möbius topologies and Möbius aromaticity
title_full Cyclic tris-[5]helicenes with single and triple twisted Möbius topologies and Möbius aromaticity
title_fullStr Cyclic tris-[5]helicenes with single and triple twisted Möbius topologies and Möbius aromaticity
title_full_unstemmed Cyclic tris-[5]helicenes with single and triple twisted Möbius topologies and Möbius aromaticity
title_short Cyclic tris-[5]helicenes with single and triple twisted Möbius topologies and Möbius aromaticity
title_sort cyclic tris-[5]helicenes with single and triple twisted möbius topologies and möbius aromaticity
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6335628/
https://www.ncbi.nlm.nih.gov/pubmed/30746118
http://dx.doi.org/10.1039/c8sc02877j
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