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Energy transfer from photosystem I to thermally reduced graphene oxide.

Autor
Maćkowski, Sebastian
Sulowska, Karolina
Wiwatowski, Kamil
GRZELAK, JUSTYNA
Szustakiewicz, Piotr
Lewandowski, Wiktor
Data publikacji
2018
Abstrakt (EN)

The energy transfer from photosynthetic complex photosystem I to thermally reduced graphene oxide was studied using fluorescence microscopy and spectroscopy, and compared against the structure in which monolayer epitaxial graphene was used as the energy acceptor. We find that the properties of reduced graphene oxide (rGO) as an energy acceptor is qualitatively similar to that of epitaxial graphene. Fluorescence quenching, which in addition to shortening of fluorescence decay, is a signature of energy transfer varies across rGO substrates and correlates with the transmission pattern. We conclude that the efficiency of the energy transfer depends on the number of rGO layers in the flakes and decreases with this number. Furthermore, careful analysis of fluorescence imaging data confirms that the energy transfer efficiency dependence on the excitation wavelength, also varies with the number of rGO flakes

Słowa kluczowe EN
energy transfer
reduced graphene oxide
protein
fluorescence microscopy
Dyscyplina PBN
nauki chemiczne
Czasopismo
Materials
Tom
11
Zeszyt
9
Strony od-do
Art. no. 1567 S. 1-11
ISSN
1996-1944
Data udostępnienia w otwartym dostępie
2018-08-30
Licencja otwartego dostępu
Uznanie autorstwa