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  4. Purple Bacteria Reaction Center Based Solid State Bio-Solar Cell With a Large Open Circuit Voltage
 
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March 2025
Journal Article
Title

Purple Bacteria Reaction Center Based Solid State Bio-Solar Cell With a Large Open Circuit Voltage

Abstract
A novel solid state bio‐solar cell is demonstrated based on a purple bacterial reaction center‐light harvesting 1 complex (RC‐LH1) that exhibits high quantum efficiency and long carrier lifetimes. We demonstrate that careful choice of transport layers enables a high open circuit voltage of up to 0.3 V in these solid state biophotovoltaic devices. Electronic processes were investigated with impedance spectroscopy. Equivalent circuit modelling of impedance spectra obtained under illumination at DC offset voltages between open circuit and short circuit conditions revealed two relaxations on microsecond and millisecond time scales that are attributed to the charge transit time and carrier recombination processes, respectively. The operational stability of the solar cells was examined under constant illumination for over 3 hours and a burn‐in time of several minutes was observed, after which operational parameters stabilized. This work is the largest voltage reported for RC‐LH1 based solid state biophotovoltaic devices to date.
Author(s)
Tulus, Tulus
Vrije Universiteit Amsterdam
Friebe, Vincent Morris
Vrije Universiteit Amsterdam
Peukert, Andreas
Vrije Universiteit Amsterdam
Muscarella, Loreta A.
Vrije Universiteit Amsterdam
Jones, Michael R.
University of Bristol
Frese, Raoul N.
Vrije Universiteit Amsterdam
Hauff, Elizabeth von  
Fraunhofer-Institut für Organische Elektronik, Elektronenstrahl- und Plasmatechnik FEP  
Journal
ChemPhotoChem  
DOI
10.1002/cptc.202400303
Language
English
Fraunhofer-Institut für Organische Elektronik, Elektronenstrahl- und Plasmatechnik FEP  
Keyword(s)
  • bio-solar cells

  • solid state

  • organic solar cells

  • reaction center

  • photovoltaics

  • impedance spectroscopy

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