| Literature DB >> 29396877 |
Wangdong Zeng1,2, Yongseok Hong3, Samara Medina Rivero4, Jinseok Kim3, José L Zafra4, Hoa Phan1, Tullimilli Y Gopalakrishna1, Tun Seng Herng5, Jun Ding5, Juan Casado4, Dongho Kim3, Jishan Wu1.
Abstract
The synthesis of stable open-shell singlet diradicaloids is critical for their practical material application. So far, most reported examples are based on carbon-centered radicals, which are intrinsically reactive, and there are very few examples of stable nitrogen-centered diradicaloids. In this full paper, a series of soluble and stable bis(imino)rylenes up to octarylene were synthesized on the basis of newly developed dibromorylene intermediates. It was found that from hexarylene onward, these quinoidal rylenes showed open-shell singlet ground states and could be thermally populated to paramagnetic triplet aminyl diradicals. They are stable due to efficient spin delocalization onto the rylene backbone as well as kinetic blocking of the aminyl sites by the bulky and electron-deficient 2,4,6-trichlorophenyl groups. They exhibited very different electronic structures, diradical character, excited-state dynamics, one-photon absorption, two-photon absorption, and electrochemical properties from their respective aromatic rylene counterparts. These bis(imino)rylenes represent a rare class of stable, neutral, nitrogen-centered aminyl diradicaloids.Entities:
Keywords: absorption; diradicaloids; electrochemical properties; electronic structure; radicals
Year: 2018 PMID: 29396877 DOI: 10.1002/chem.201706041
Source DB: PubMed Journal: Chemistry ISSN: 0947-6539 Impact factor: 5.236