Merging Pyrrole with Boron into Versatile Di(2‐pyrryl)borane Building Blocks: π‐Extension, Polymerization, and Coordination

D Daniel Göbel (Julius‐Maximilians‐Universität Würzburg Institute of Inorganic Chemistry and Institute for Sustainable Chemistry & Catalysis with Boron (ICB) Am Hubland 97074 Würzburg Germany) A Andreas Helbig (Julius‐Maximilians‐Universität Würzburg Institute of Inorganic Chemistry and Institute for Sustainable Chemistry & Catalysis with Boron (ICB) Am Hubland 97074 Würzburg Germany) A Alexandra Friedrich (Institute of Inorganic Chemistry and Institute for Sustainable Chemistry & Catalysis with Boron (ICB)) J Jonas Bachmann (Institute of Inorganic Chemistry and Institute for Sustainable Chemistry & Catalysis with Boron (ICB) Julius‐Maximilians‐Universität Würzburg Würzburg Germany) M Manuel Buckel (Institute of Inorganic Chemistry and Institute for Sustainable Chemistry & Catalysis with Boron (ICB)) J Johannes Chorbacher (Julius‐Maximilians‐Universität Würzburg Institute of Inorganic Chemistry Würzburg Germany) H Holger Helten (Institute of Inorganic Chemistry and Institute for Sustainable Chemistry & Catalysis with Boron (ICB))

Abstract

Abstract Conjugated di(hetaryl)boranes—particularly those of thiophene, but also of furan—have recently proven to be extremely useful building blocks for organic optoelectronic materials. The importance of the combination of boron with pyrrole, on the other hand, becomes particularly apparent when considering the well‐known, versatile BODIPY dyes, in which the boron atom is tetracoordinated. However, synergistic effects of combining pyrrole with tricoordinate boron have been hardly exploited to date, which is probably due to synthetic challenges associated with the special reactivity of this five‐membered heterocycle. Herein, a high‐yield, gram‐scale synthesis of two di(2‐pyrryl)boranes is presented, including the previously elusive unprotected N H derivative. Their versatility is demonstrated by their application as building blocks for π‐extended tetrahetarene boranes, a polymer, and a zirconium(IV) complex. The crystallographically determined molecular structures of both di(2‐pyrryl)boranes and the Zr complex show largely planar dipyrrylborane moieties. Compared to their thiophene and furan congeners, the new conjugated boranes show bathochromically shifted absorption bands and more intense fluorescence emission, with solvatochromic behavior, aggregation‐induced emission enhancement (AIEE), and solid‐state emission. Time‐dependent DFT calculations reveal that this is due to the population of twisted intramolecular charge transfer (TICT) states, giving rise to dual emission in the unprotected triarylborane.

Article Details

Volume / Issue Vol. 65, Issue 2
Published January 09, 2026
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (7)

D

Daniel Göbel

Julius‐Maximilians‐Universität Würzburg Institute of Inorganic Chemistry and Institute for Sustainable Chemistry & Catalysis with Boron (ICB) Am Hubland 97074 Würzburg Germany

A

Andreas Helbig

Julius‐Maximilians‐Universität Würzburg Institute of Inorganic Chemistry and Institute for Sustainable Chemistry & Catalysis with Boron (ICB) Am Hubland 97074 Würzburg Germany

A

Alexandra Friedrich

Institute of Inorganic Chemistry and Institute for Sustainable Chemistry & Catalysis with Boron (ICB)

J

Jonas Bachmann

Institute of Inorganic Chemistry and Institute for Sustainable Chemistry & Catalysis with Boron (ICB) Julius‐Maximilians‐Universität Würzburg Würzburg Germany

M

Manuel Buckel

Institute of Inorganic Chemistry and Institute for Sustainable Chemistry & Catalysis with Boron (ICB)

J

Johannes Chorbacher

Julius‐Maximilians‐Universität Würzburg Institute of Inorganic Chemistry Würzburg Germany

H

Holger Helten

Institute of Inorganic Chemistry and Institute for Sustainable Chemistry & Catalysis with Boron (ICB)