Back to Search Start Over

An Element-Substituted Cyclobutadiene Exhibiting High-Energy Blue Phosphorescence

Authors :
Shoji, Yoshiaki
Ikabata, Yasuhiro
Ryzhii, Ivan
Ayub, Rabia
El Bakouri, Ouissam
Sato, Taiga
Wang, Qi
Miura, Tomoaki
Karunathilaka, Buddhika S. B.
Tsuchiya, Youichi
Adachi, Chihaya
Ottosson, Henrik
Nakai, Hiromi
Ikoma, Tadaaki
Fukushima, Takanori
Shoji, Yoshiaki
Ikabata, Yasuhiro
Ryzhii, Ivan
Ayub, Rabia
El Bakouri, Ouissam
Sato, Taiga
Wang, Qi
Miura, Tomoaki
Karunathilaka, Buddhika S. B.
Tsuchiya, Youichi
Adachi, Chihaya
Ottosson, Henrik
Nakai, Hiromi
Ikoma, Tadaaki
Fukushima, Takanori
Publication Year :
2021

Abstract

1,3,2,4-Diazadiboretidine, an isoelectronic heteroanalogue of cyclobutadiene, is an interesting chemical species in terms of comparison with the carbon system, whereas its properties have never been investigated experimentally. According to Baird's rule, Huckel antiaromatic cyclobutadiene acquires aromaticity in the lowest triplet state. Here we report experimental and theoretical studies on the ground- and excited-state antiaromaticity/aromaticity as well as the photophysical properties of an isolable 1,3,2,4-diazadiboretidine derivative. The crystal structure of the diazadiboretidine derivative revealed that the B2N2 ring adopts a planar rhombic geometry in the ground state. Yet, theoretical calculations showed that the B2N2 ring turns to a square geometry with a nonaromatic character in the lowest triplet state. Notably, the diazadiboretidine derivative has the lowest singlet and triplet states lying at close energy levels and displays blue phosphorescence.

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1312846880
Document Type :
Electronic Resource
Full Text :
https://doi.org/10.1002.anie.202106490