Noncovalent Modification of Cycloparaphenylene by Catenane Formation Using an Active Metal Template Strategy**

Author:

Ishibashi Hisayasu1,Rondelli Manuel1,Shudo Hiroki1ORCID,Maekawa Takehisa23ORCID,Ito Hideto1ORCID,Mizukami Kiichi4,Kimizuka Nobuo4ORCID,Yagi Akiko13ORCID,Itami Kenichiro123ORCID

Affiliation:

1. Department of Chemistry Graduate School of Science Nagoya University Chikusa Nagoya 464-8602 Japan

2. Institute of Chemistry, Academia Sinica 128 Academia Road, Section 2, Nankang Taipei 115 Taiwan

3. Institute of Transformative Bio-Molecules (WPI-ITbM) Nagoya University Chikusa Nagoya 464-8602 Japan

4. Department of Applied Chemistry Graduate School of Engineering Center for Molecular Systems (CMS) Kyushu University Fukuoka 819-0395 Japan

Abstract

AbstractThe active metal template (AMT) strategy is a powerful tool for the formation of mechanically interlocked molecules (MIMs) such as rotaxanes and catenanes, allowing the synthesis of a variety of MIMs, including π‐conjugated and multicomponent macrocycles. Cycloparaphenylene (CPP) is an emerging molecule characterized by its cyclic π‐conjugated structure and unique properties. Therefore, diverse modifications of CPPs are necessary for its wide application. However, most CPP modifications require early stage functionalization and the direct modification of CPPs is very limited. Herein, we report the synthesis of a catenane consisting of [9]CPP and a 2,2′‐bipyridine macrocycle as a new CPP analogue that contains a reliable synthetic scaffold enabling diverse and concise post‐modification. Following the AMT strategy, the [9]CPP‐bipyridine catenane was successfully synthesized through Ni‐mediated aryl‐aryl coupling. Catalytic C−H borylation/cross‐coupling and metal complexation of the bipyridine macrocycle moiety, an effective post‐functionalization method, were also demonstrated with the [9]CPP‐bipyridine catenane. Single‐crystal X‐ray structural analysis revealed that the [9]CPP‐bipyridine catenane forms a tridentated complex with an Ag ion inside the CPP ring. This interaction significantly enhances the phosphorescence lifetime through improved intermolecular interactions.

Funder

Japan Society for the Promotion of Science

Japan Science and Technology Corporation

Publisher

Wiley

Subject

General Chemistry,Catalysis

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