Probing Charge Management across the π-Systems of Nanographenes in Regioisomeric Electron Donor-Acceptor Architectures
Journal article, 2022

Inspired by light-induced processes in nature to mimic the primary events in the photosynthetic reaction centers, novel functional materials combine electron donors and acceptors, i.e., (metallo)porphyrins (ZnP) and fullerenes (C60), respectively, with emerging materials, i.e., nanographenes. We utilized hexa-peri-hexabenzocoronene (HBC) due to its versatility regarding functionalization and physicochemical properties, to construct three regioisomeric ZnP-HBC-C60 conjugates, which foster geometrical diversity by arranging ZnP and C60 in ortho-, meta-, and para-positions to each other. The corresponding hexaarylbenzene (HAB) motifs, with an interrupted π-system, were also prepared. Transient absorption measurements disclosed the fast population of charge transfer as well as singlet and triplet charge-separated states. With the help of density functional theory (DFT) calculations, we further conceive the communication across the HBCs and HABs. This work reveals the impact of both the geometrical arrangement with respect to through-space versus through-bond interactions and the structural rigidity/flexibility on the charge management across the different π-systems.

Author

Helen Hölzel

Chalmers, Chemistry and Chemical Engineering, Applied Chemistry

University of Erlangen-Nuremberg (FAU)

Philipp Haines

University of Erlangen-Nuremberg (FAU)

Ramandeep Kaur

University of Erlangen-Nuremberg (FAU)

Dominik Lungerich

Yonsei University

Korea Basic Science Institute

Norbert Jux

University of Erlangen-Nuremberg (FAU)

Dirk M. Guldi

University of Erlangen-Nuremberg (FAU)

Journal of the American Chemical Society

0002-7863 (ISSN) 1520-5126 (eISSN)

Vol. 144 20 8977-8986

Subject Categories

Inorganic Chemistry

Other Chemistry Topics

Theoretical Chemistry

DOI

10.1021/jacs.2c00456

PubMed

35543627

More information

Latest update

3/7/2024 9