Impact of Internal Charge Transfer on the Photophysical Properties of Pyridine‐Fused Phosphorus‐Nitrogen Heterocycles

Author:

McNeill J. N.1ORCID,Kascoutas Melanie A.1ORCID,Karas Lucas J.2ORCID,Zakharov Lev N.3ORCID,Wu Judy I.2ORCID,Johnson Darren W.1ORCID,Haley Michael M.1ORCID

Affiliation:

1. Department of Chemistry & Biochemistry and Materials Science Institute University of Oregon Eugene Oregon 97403-1253 USA

2. Department of Chemistry University of Houston Houston Texas 77204 USA

3. Center for Advanced Materials Characterization at Oregon (CAMCOR) University of Oregon Eugene, Oregon 97403-1433 USA

Abstract

AbstractThe phosphaquinolinone scaffold has been previously studied as a modular core for a variety of fluorescent species where use of substituent effects has focused on increasing or decreasing electron density in the core rings. We now report the synthesis and analysis of several pyridine‐containing phosphaquinolinone species exhibiting notable linear conjugation from the aryl‐substituent to electron‐withdrawing pyridyl nitrogen. Varying the nature of the aryl substituent from electron‐withdrawing to electron‐donating leads to the generation of an internal charge‐transfer (ICT) band in the absorbance spectrum, which becomes the dominant absorbance in terms of intensity in the most electron‐rich ‐NMe2 example. This heterocycle exhibits improved photophysical properties compared to others in the set including high quantum yield and considerably red‐shifted emission. The enhanced ICT can be observed in the X‐ray data where a rare example of molecule co‐planarity is observed. Computational data show increased localization of negative charge on the pyridyl nitrogen as the electron‐donating character of the aryl‐substituent increases.

Funder

Directorate for Mathematical and Physical Sciences

National Institutes of Health

Alfred P. Sloan Foundation

Publisher

Wiley

Subject

General Chemistry,Catalysis,Organic Chemistry

Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Pnictogen‐Rich Heterocycles Derived from a Phosphadiazonium Cation;Chemistry – A European Journal;2024-03-13

2. Azaphosphinines and their derivatives;Chemical Society Reviews;2023

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