Photosynthetic Reaction-Center/Graphene Biohybrid for Optoelectronics

Author:

Szabo Tibor1,Panajotović Radmila2,Vujin Jasna2,Tomašević-Ilić Tijana2,Bagdanavičitūtė Ieva3,Urbonaitė Greta3,Cseko Richard4,Hernadi Klara5,Varo Gyorgy6,Nagy Laszlo4

Affiliation:

1. Isotope Climatology and Environmental Research Centre (ICER), Institute for Nuclear Research, Hungarian Academy of Sciences, Bem tér 18/c, Debrecen 4026, Hungary

2. Institute of Physics, University of Belgrade, Belgrade, 11080, Serbia

3. Faculty of Natural Sciences, Vytautas Magnus University, Kaunas, 44404, Lithuania

4. Institute of Medical Physics and Informatics, University of Szeged, 6720, Hungary

5. Department of Applied and Environmental Chemistry, University of Szeged, 6720, Hungary

6. Institute of Biophysics, Biological Research Center, Szeged, 6726, Hungary

Abstract

Photosynthetic reaction center proteins (RC) purified from purple bacterial strains were deposited on graphene layer prepared by liquid phase exfoliation and light-induced resistance change was measured. By measuring the temperature dependence of the resistance change of the bare and RC covered graphene and comparing with the one inactivated by protein unfolding, two effects were possible to separate. One of them is the resistance change due to temperature effect. The other one clearly indicates a possible electric/electronic interaction between the charge flow in the graphene and the light-induced charge pair within the protein, which is, essentially, different in the open (dark, PBPheo) and closed (light, P+BPheo) states. These results provide useful information for designing hybrid bio-photonic devices which are able to absorb and convert light energy.

Publisher

American Scientific Publishers

Subject

Condensed Matter Physics,General Materials Science,Biomedical Engineering,General Chemistry,Bioengineering

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