Boron‐Doping of a Macrocyclic Tetrafuran Framework Unveils an Expanded Porphyrinoid With Switchable (Anti)Aromaticity and Conformational Dynamics

L Lukas Swoboda (Institute of Inorganic Chemistry and Institute for Sustainable Chemistry & Catalysis with Boron (ICB)) J Jonas Klopf (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) I Ivo Krummenacher (Institute for Inorganic Chemistry, Julius-Maximilians-Universität Würzburg, Am Hubland, 97074 Würzburg, Germany) H Holger Braunschweig (Institute for Inorganic Chemistry, Julius-Maximilians-Universität Würzburg, Am Hubland, 97074 Würzburg, Germany) B Bernd Engels (Institute for Physical and Theoretical Chemistry, Julius-Maximilians-Universität Würzburg, Emil-Fischer-Straße 42, Würzburg 97074, Germany) H Holger Helten (Institute of Inorganic Chemistry and Institute for Sustainable Chemistry & Catalysis with Boron (ICB))

Abstract

ABSTRACT Expanded porphyrinoids are an emerging class of organic chromophores with often exceptional optoelectronic properties such as broad absorption extending into the near‐infrared (NIR) spectral region. To optimize porphyrinoid‐based materials for specific purposes, it is essential to specifically tailor their electronic properties. This can be achieved by incorporation of heteroatoms into their π‐conjugated framework. Replacing C atoms of their backbone with trivalent boron centers yields electroneutral boraporphyrinoids that feature a reduced π‐electron count compared to their carbon analogs. While some thiophene‐based boraporphyrinoids have been reported, boron macrocycles based solely on the renewable furan building block have remained elusive so far. Herein, we present the unprecedented diboratetraoxaporphyrin(2.1.2.1) 1E and the potassium salt of its dianion K 2 [1E] , as well as open‐chain reference compound 6 . Investigation of the electronic structure of 1E , [1E] 2− , and the radical anion [1E] •− revealed that 1E exhibits magnetically antiaromatic features that are more pronounced compared to its thiophene analog diboratetrathiaporphyrin(2.1.2.1), while upon transition to [1E] 2− it becomes strongly aromatic. Interestingly, neutral porphyrinoid 1E is conformationally flexible, while the macrocyclic backbone becomes rigid upon reduction to K 2 [1E] . The aromatic porphyrinoid K 2 [1E] has absorption bands in the blue, red, and NIR spectral regions and exhibits photoluminescence at 1032 nm.

Article Details

Volume / Issue Vol. 65, Issue 23
Published June 01, 2026
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (7)

L

Lukas Swoboda

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

J

Jonas Klopf

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

I

Ivo Krummenacher

Institute for Inorganic Chemistry, Julius-Maximilians-Universität Würzburg, Am Hubland, 97074 Würzburg, Germany

H

Holger Braunschweig

Institute for Inorganic Chemistry, Julius-Maximilians-Universität Würzburg, Am Hubland, 97074 Würzburg, Germany

B

Bernd Engels

Institute for Physical and Theoretical Chemistry, Julius-Maximilians-Universität Würzburg, Emil-Fischer-Straße 42, Würzburg 97074, Germany

H

Holger Helten

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