An Atropisomerism Study of Large Cycloarylenes: [n]Cyclo‐4,10‐Pyrenylenes’ Case

Author:

Kurosaki Ryo1ORCID,Morimoto Hirofumi1,Matsuo Kyohei1ORCID,Hayashi Hironobu1ORCID,Yamada Hiroko1ORCID,Aratani Naoki1ORCID

Affiliation:

1. Division of Materials Science Graduate School of Science and Technology Nara Institute of Science and Technology (NAIST) 8916-5 Takayama-cho Ikoma 630-0192 Japan

Abstract

AbstractAn atropisomerism of large cycloarylenes was studied using [n]cyclo‐4,10‐pyrenylenes (n=6–21) as an illustrative example with two simple assumptions: (1) alternating configurations (R,S,R,S,…) are thermodynamically most stable, and (2) three consecutive identical configurations (R,R,RorS,S,S) are prevented. Ni‐mediated coupling of a 5,9‐diiodopyrene gave a series of directly‐linked cyclic pyrene oligomers in one‐pot reaction. As‐synthesized cyclic hexamer was assigned as an (R,S,S,R,R,S) structure, converted into an (R,S,R,S,R,S)‐form upon heating. Cyclic heptamer consists of two types ofC2symmetric structures predicted from assumption (2), one of which was convergent to one another by heating. Three atropisomers of cyclic octamer were analyzed from the possible five candidates by means of1H nuclear magnetic resonance (NMR) spectroscopy, and the conversion process to (R,S,R,S,R,S,R,S) configurations upon heating was investigated. In total, according to two simple rules, the analysis of atropisomerism could be performed smoothly.

Funder

Japan Society for the Promotion of Science

Publisher

Wiley

Subject

General Chemistry,Catalysis,Organic Chemistry

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