A Kinetically Stabilized Nitrogen‐Doped Triangulene Cation: Stable and NIR Fluorescent Diradical Cation with Triplet Ground State

Author:

Arikawa Shinobu1,Shimizu Akihiro12ORCID,Shiomi Daisuke3ORCID,Sato Kazunobu3ORCID,Takui Takeji3ORCID,Sotome Hikaru4ORCID,Miyasaka Hiroshi4ORCID,Murai Masahito5,Yamaguchi Shigehiro56ORCID,Shintani Ryo12ORCID

Affiliation:

1. Division of Chemistry, Department of Materials Engineering Science, Graduate School of Engineering Science Osaka University Toyonaka Osaka 560-8531 Japan

2. Innovative Catalysis Science Division, Institute for Open and Transdisciplinary Research Initiatives (ICS-OTRI) Osaka University Suita Osaka 565-0871 Japan

3. Department of Chemistry, Graduate School of Science Osaka Metropolitan University Sumiyoshi-ku Osaka 558-8585 Japan

4. Division of Frontier Materials Science and Center for Advanced Interdisciplinary Research, Graduate School of Engineering Science Osaka University Toyonaka Osaka 560-8531 Japan

5. Department of Chemistry, Graduate School of Science, and Integrated Research Consortium on Chemical Sciences (IRCCS) Nagoya University Furo, Chikusa Nagoya 464-8602 Japan

6. Institute of Transformative Bio-Molecules (WPI-ITbM) Nagoya University Furo, Chikusa Nagoya 464-8601 Japan

Abstract

AbstractA kinetically‐stabilized nitrogen‐doped triangulene cation derivative has been synthesized and isolated as the stable diradical with a triplet ground state that exhibits near‐infrared emission. As was the case for a triangulene derivative we previously synthesized, the triplet ground state with a large singlet‐triplet energy gap was experimentally confirmed by magnetic measurements. In contrast to the triangulene derivative, the nitrogen‐doped triangulene cation derivative is highly stable even in solution under air and exhibits near‐infrared absorption and emission because the alternancy symmetry of triangulene is broken by the nitrogen cation. Breaking the alternancy symmetry of triplet alternant hydrocarbon diradicals by a nitrogen cation would therefore be an effective strategy to create stable diradicals possessing magnetic properties similar to the parent hydrocarbons but with different electrochemical and photophysical properties.

Funder

Asian Office of Aerospace Research and Development

Publisher

Wiley

Subject

General Chemistry,Catalysis

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