Pyrimidine-Substituted Hexaarylbenzenes as Versatile Building Blocks for N–Doped Organic Materials

Abstract Hexaarylbenzenes (HABs) are valuable precursors for the bottom-up synthesis of (nano-)graphene structures. In this work the synthesis of several bis-pyrimidine substituted HABs furnished with tert-butyl groups at different sites of the four pendant phenyl rings is reported. The synthetic pr...

Full description

Bibliographic Details
Main Authors: Nicolas Meitinger, Alexander K. Mengele, Djawed Nauroozi, Sven Rau
Format: Article
Language:English
Published: Georg Thieme Verlag 2021-04-01
Series:Organic Materials
Subjects:
Online Access:http://www.thieme-connect.de/DOI/DOI?10.1055/a-1482-6190
id doaj-9f4350b893d947f1ba87e0f6c31c494e
record_format Article
spelling doaj-9f4350b893d947f1ba87e0f6c31c494e2021-05-27T00:45:03ZengGeorg Thieme VerlagOrganic Materials2625-18252021-04-01030229530210.1055/a-1482-6190Pyrimidine-Substituted Hexaarylbenzenes as Versatile Building Blocks for N–Doped Organic MaterialsNicolas Meitinger0Alexander K. Mengele1Djawed Nauroozi2Sven Rau3Ulm University, Institute of Inorganic Chemistry I, Albert-Einstein-Allee 11, 89081 Ulm, GermanyUlm University, Institute of Inorganic Chemistry I, Albert-Einstein-Allee 11, 89081 Ulm, GermanyUlm University, Institute of Inorganic Chemistry I, Albert-Einstein-Allee 11, 89081 Ulm, GermanyUlm University, Institute of Inorganic Chemistry I, Albert-Einstein-Allee 11, 89081 Ulm, GermanyAbstract Hexaarylbenzenes (HABs) are valuable precursors for the bottom-up synthesis of (nano-)graphene structures. In this work the synthesis of several bis-pyrimidine substituted HABs furnished with tert-butyl groups at different sites of the four pendant phenyl rings is reported. The synthetic procedure is based on modular [4 + 2]-Diels–Alder cycloaddition reactions followed by decarbonylation. Analysis of the solid-state structures revealed that the newly synthesized HABs feature a propeller-like arrangement of the six arylic substituents around the benzene core. Here, the tilt of the aryl rings with respect to the central ring strongly depends on the intermolecular interactions between the HABs and co-crystallized solvent molecules. Interestingly, by evading the closest proximity of the central ring using an alkyne spacer, the distant pyrimidine ring is oriented in the coplanar geometry with regard to the benzene core, giving rise to a completely different UV-absorption profile.http://www.thieme-connect.de/DOI/DOI?10.1055/a-1482-6190carbon materialscycloadditionsdiels–alder reactionsdopingligand designn-heterocycles
collection DOAJ
language English
format Article
sources DOAJ
author Nicolas Meitinger
Alexander K. Mengele
Djawed Nauroozi
Sven Rau
spellingShingle Nicolas Meitinger
Alexander K. Mengele
Djawed Nauroozi
Sven Rau
Pyrimidine-Substituted Hexaarylbenzenes as Versatile Building Blocks for N–Doped Organic Materials
Organic Materials
carbon materials
cycloadditions
diels–alder reactions
doping
ligand design
n-heterocycles
author_facet Nicolas Meitinger
Alexander K. Mengele
Djawed Nauroozi
Sven Rau
author_sort Nicolas Meitinger
title Pyrimidine-Substituted Hexaarylbenzenes as Versatile Building Blocks for N–Doped Organic Materials
title_short Pyrimidine-Substituted Hexaarylbenzenes as Versatile Building Blocks for N–Doped Organic Materials
title_full Pyrimidine-Substituted Hexaarylbenzenes as Versatile Building Blocks for N–Doped Organic Materials
title_fullStr Pyrimidine-Substituted Hexaarylbenzenes as Versatile Building Blocks for N–Doped Organic Materials
title_full_unstemmed Pyrimidine-Substituted Hexaarylbenzenes as Versatile Building Blocks for N–Doped Organic Materials
title_sort pyrimidine-substituted hexaarylbenzenes as versatile building blocks for n–doped organic materials
publisher Georg Thieme Verlag
series Organic Materials
issn 2625-1825
publishDate 2021-04-01
description Abstract Hexaarylbenzenes (HABs) are valuable precursors for the bottom-up synthesis of (nano-)graphene structures. In this work the synthesis of several bis-pyrimidine substituted HABs furnished with tert-butyl groups at different sites of the four pendant phenyl rings is reported. The synthetic procedure is based on modular [4 + 2]-Diels–Alder cycloaddition reactions followed by decarbonylation. Analysis of the solid-state structures revealed that the newly synthesized HABs feature a propeller-like arrangement of the six arylic substituents around the benzene core. Here, the tilt of the aryl rings with respect to the central ring strongly depends on the intermolecular interactions between the HABs and co-crystallized solvent molecules. Interestingly, by evading the closest proximity of the central ring using an alkyne spacer, the distant pyrimidine ring is oriented in the coplanar geometry with regard to the benzene core, giving rise to a completely different UV-absorption profile.
topic carbon materials
cycloadditions
diels–alder reactions
doping
ligand design
n-heterocycles
url http://www.thieme-connect.de/DOI/DOI?10.1055/a-1482-6190
work_keys_str_mv AT nicolasmeitinger pyrimidinesubstitutedhexaarylbenzenesasversatilebuildingblocksforndopedorganicmaterials
AT alexanderkmengele pyrimidinesubstitutedhexaarylbenzenesasversatilebuildingblocksforndopedorganicmaterials
AT djawednauroozi pyrimidinesubstitutedhexaarylbenzenesasversatilebuildingblocksforndopedorganicmaterials
AT svenrau pyrimidinesubstitutedhexaarylbenzenesasversatilebuildingblocksforndopedorganicmaterials
_version_ 1721426008589991936