Functional Nanohybrid Materials from Photosynthetic Reaction Center Proteins

Author:

Hajdu Kata12,Szabó Tibor12ORCID,Sarrai Abd Elaziz13,Rinyu László2,Nagy László1

Affiliation:

1. Department of Medical Physics and Informatics, University of Szeged, Szeged, Rerrich B. tér 1, 6721, Hungary

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

3. Laboratory for Biomaterials and Transport Phenomena LBMPT, University Yahia Fares, 26000 Medea, Algeria

Abstract

Application of technical developments in biology and vice versa or biological samples in technology led to the development of new types of functional, so-called “biohybrid” materials. These types of materials can be created at any level of the biological organization from molecules through tissues and organs to the individuals. Macromolecules and/or molecular complexes, membranes in biology, are inherently good representatives of nanosystems since they fall in the range usually called “nano.” Nanohybrid materials provide the possibility to create functional bionanohybrid complexes which also led to new discipline called “nanobionics” in the literature and are considered as materials for the future. In this publication, the special characteristics of photosynthetic reaction center proteins, which are “nature’s solar batteries,” will be discussed in terms of their possible applications for creating functional molecular biohybrid materials.

Funder

National Research, Development and Innovation

Publisher

Hindawi Limited

Subject

General Materials Science,Renewable Energy, Sustainability and the Environment,Atomic and Molecular Physics, and Optics,General Chemistry

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