Cargando…

Selective access to either a doubly boron-doped tetrabenzopentacene or an oxadiborepin from the same precursor

The well-known red emitter tetrabenzo[de,hi,op,st]pentacene (TBPA) has been transformed into a bright blue emitter (B(2)-TBPA; λ(em) = 472 nm; c-hexane) via substitutional doping with two boron atoms. In contrast to the electron-rich TBPA, which forms endo-peroxides with O(2) under daylight, the ben...

Descripción completa

Detalles Bibliográficos
Autores principales: Radtke, Julian, Schickedanz, Kai, Bamberg, Marcel, Menduti, Luigi, Schollmeyer, Dieter, Bolte, Michael, Lerner, Hans-Wolfram, Wagner, Matthias
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Royal Society of Chemistry 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7442282/
https://www.ncbi.nlm.nih.gov/pubmed/32874487
http://dx.doi.org/10.1039/c9sc03115d
_version_ 1783573441392148480
author Radtke, Julian
Schickedanz, Kai
Bamberg, Marcel
Menduti, Luigi
Schollmeyer, Dieter
Bolte, Michael
Lerner, Hans-Wolfram
Wagner, Matthias
author_facet Radtke, Julian
Schickedanz, Kai
Bamberg, Marcel
Menduti, Luigi
Schollmeyer, Dieter
Bolte, Michael
Lerner, Hans-Wolfram
Wagner, Matthias
author_sort Radtke, Julian
collection PubMed
description The well-known red emitter tetrabenzo[de,hi,op,st]pentacene (TBPA) has been transformed into a bright blue emitter (B(2)-TBPA; λ(em) = 472 nm; c-hexane) via substitutional doping with two boron atoms. In contrast to the electron-rich TBPA, which forms endo-peroxides with O(2) under daylight, the benchtop-stable B(2)-TBPA is a good electron acceptor and undergoes reversible reduction at a moderate half-wave potential of E(1/2) = –1.73 V (vs. FcH/FcH(+); THF). Although the size of B(2)-TBPA falls within the nanoscale, the helically twisted compound readily dissolves in c-hexane and does not require solubilizing substituents. The synthesis of B(2)-TBPA is based on the nickel-mediated Yamamoto-type dehalogenation of tetrabrominated 9,10-di(naphth-1-yl)-9,10-dihydro-9,10-diboraanthracene. This intramolecular C–C heterocoupling reaction shows a remarkable solvent dependence: B(2)-TBPA forms only in pyridine (79% yield), whereas an oxadiborepin is obtained from THF solutions (ODBE, 81%; the reaction mixture is quenched with air in both cases). Insight into the corresponding reaction mechanism was gained from the isolation of intermediates and an investigation of their chemical properties. ODBE is an interesting blue emitter in its own right. Furthermore, it can be ring-opened with excess BBr(3) at the B–O–B moiety to afford a dimeric borabenzo[de]anthracene.
format Online
Article
Text
id pubmed-7442282
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-74422822020-08-31 Selective access to either a doubly boron-doped tetrabenzopentacene or an oxadiborepin from the same precursor Radtke, Julian Schickedanz, Kai Bamberg, Marcel Menduti, Luigi Schollmeyer, Dieter Bolte, Michael Lerner, Hans-Wolfram Wagner, Matthias Chem Sci Chemistry The well-known red emitter tetrabenzo[de,hi,op,st]pentacene (TBPA) has been transformed into a bright blue emitter (B(2)-TBPA; λ(em) = 472 nm; c-hexane) via substitutional doping with two boron atoms. In contrast to the electron-rich TBPA, which forms endo-peroxides with O(2) under daylight, the benchtop-stable B(2)-TBPA is a good electron acceptor and undergoes reversible reduction at a moderate half-wave potential of E(1/2) = –1.73 V (vs. FcH/FcH(+); THF). Although the size of B(2)-TBPA falls within the nanoscale, the helically twisted compound readily dissolves in c-hexane and does not require solubilizing substituents. The synthesis of B(2)-TBPA is based on the nickel-mediated Yamamoto-type dehalogenation of tetrabrominated 9,10-di(naphth-1-yl)-9,10-dihydro-9,10-diboraanthracene. This intramolecular C–C heterocoupling reaction shows a remarkable solvent dependence: B(2)-TBPA forms only in pyridine (79% yield), whereas an oxadiborepin is obtained from THF solutions (ODBE, 81%; the reaction mixture is quenched with air in both cases). Insight into the corresponding reaction mechanism was gained from the isolation of intermediates and an investigation of their chemical properties. ODBE is an interesting blue emitter in its own right. Furthermore, it can be ring-opened with excess BBr(3) at the B–O–B moiety to afford a dimeric borabenzo[de]anthracene. Royal Society of Chemistry 2019-07-31 /pmc/articles/PMC7442282/ /pubmed/32874487 http://dx.doi.org/10.1039/c9sc03115d Text en This journal is © The Royal Society of Chemistry 2019 https://creativecommons.org/licenses/by-nc/3.0/This article is freely available. This article is licensed under a Creative Commons Attribution Non Commercial 3.0 Unported Licence (CC BY-NC 3.0)
spellingShingle Chemistry
Radtke, Julian
Schickedanz, Kai
Bamberg, Marcel
Menduti, Luigi
Schollmeyer, Dieter
Bolte, Michael
Lerner, Hans-Wolfram
Wagner, Matthias
Selective access to either a doubly boron-doped tetrabenzopentacene or an oxadiborepin from the same precursor
title Selective access to either a doubly boron-doped tetrabenzopentacene or an oxadiborepin from the same precursor
title_full Selective access to either a doubly boron-doped tetrabenzopentacene or an oxadiborepin from the same precursor
title_fullStr Selective access to either a doubly boron-doped tetrabenzopentacene or an oxadiborepin from the same precursor
title_full_unstemmed Selective access to either a doubly boron-doped tetrabenzopentacene or an oxadiborepin from the same precursor
title_short Selective access to either a doubly boron-doped tetrabenzopentacene or an oxadiborepin from the same precursor
title_sort selective access to either a doubly boron-doped tetrabenzopentacene or an oxadiborepin from the same precursor
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7442282/
https://www.ncbi.nlm.nih.gov/pubmed/32874487
http://dx.doi.org/10.1039/c9sc03115d
work_keys_str_mv AT radtkejulian selectiveaccesstoeitheradoublyborondopedtetrabenzopentaceneoranoxadiborepinfromthesameprecursor
AT schickedanzkai selectiveaccesstoeitheradoublyborondopedtetrabenzopentaceneoranoxadiborepinfromthesameprecursor
AT bambergmarcel selectiveaccesstoeitheradoublyborondopedtetrabenzopentaceneoranoxadiborepinfromthesameprecursor
AT mendutiluigi selectiveaccesstoeitheradoublyborondopedtetrabenzopentaceneoranoxadiborepinfromthesameprecursor
AT schollmeyerdieter selectiveaccesstoeitheradoublyborondopedtetrabenzopentaceneoranoxadiborepinfromthesameprecursor
AT boltemichael selectiveaccesstoeitheradoublyborondopedtetrabenzopentaceneoranoxadiborepinfromthesameprecursor
AT lernerhanswolfram selectiveaccesstoeitheradoublyborondopedtetrabenzopentaceneoranoxadiborepinfromthesameprecursor
AT wagnermatthias selectiveaccesstoeitheradoublyborondopedtetrabenzopentaceneoranoxadiborepinfromthesameprecursor