University of Wollongong
Browse

Novel nanographene/porphyrin hybrids-preparation, characterization, and application in solar energy conversion schemes

Download (1.4 MB)
journal contribution
posted on 2024-11-15, 02:49 authored by Daniel Kiessling, Ruben D Costa, Georgios Katsukis, Jenny Malig, Fabian Lodermeyer, Sebastian Feihl, Alexandra Roth, Leonie Wibmer, Matthias Kehrer, Michel Volland, Pawel WagnerPawel Wagner, Gordon WallaceGordon Wallace, David OfficerDavid Officer, Dirk Guldi
Four novel nanographene/porphyrin hybrids were prepared, characterized, and probed in solar energy conversion schemes. Exfoliation of graphite by means of immobilizing four different porphyrins onto the basal plane of graphene is accompanied by distinct electronic interactions in both the ground and the excited states. In the ground state, a strong loss in oscillator strength goes hand-in-hand with a notable broadening of the porphyrin transitions and, as such, attests to the shift of electron density from the electron donating porphyrins to nanographene. In the excited state, a nearly quantitative quenching of the porphyrin fluorescence is indicative of full charge transfer. The latter is corroborated by femtosecond transient absorption measurements, which reveal the generation of the one-electron oxidized radical cation of the porphyrins with absorption maxima at 490 and 625 nm in the visible region and conduction band electrons in nanographene with features at 890 and 1025 nm in the near infrared region. We have demonstrated the applicability of the new nanographene/porphyrin hybrids in, for example, solar cells. In this regard, the presence of flakes is crucial in terms of influencing the injection processes, preventing aggregation, and reducing recombination losses, which are commonly encountered in porphyrin-based DSSCs. 2013 The Royal Society of Chemistry.

History

Citation

Kiessling, D., Costa, R. D., Katsukis, G., Malig, J., Lodermeyer, F., Feihl, S., Roth, A., Wibmer, L., Kehrer, M., Volland, M., Wagner, P. W., Wallace, G. G., Officer, D. L. & Guldi, D. M. (2013). Novel nanographene/porphyrin hybrids-preparation, characterization, and application in solar energy conversion schemes. Chemical Science, 4 (8), 3085-3098.

Journal title

Chemical Science

Volume

4

Issue

8

Pagination

3085-3098

Language

English

RIS ID

80537

Usage metrics

    Categories

    Exports

    RefWorks
    BibTeX
    Ref. manager
    Endnote
    DataCite
    NLM
    DC