Title :
A Microsized Microbial Solar Cell: A demonstration of photosynthetic bacterial electrogenic capabilities.
Author :
San Yoon ; Hankeun Lee ; Fraiwan, Arwa ; Chunhui Dai ; Seokheun Choi
Author_Institution :
Dept. of Electr. & Comput. Eng, State Univ. of New York-Binghamton, Binghamton, NY, USA
Abstract :
This article focuses on a microsized microbial solar cell (MSC) that can produce sustainable energy through photosynthetic reactions of cyanobacteria Synechocystis PCC 6803 in the anode. The MSC has 57-μL anode/cathode chambers defined by laser-machined poly(methyl methacrylate) (PMMA) substrates. We obtained a maximum power density of 7.09 nW/cm2, which is 170 times more power than previously reported microelectromechanical system (MEMS) MSCs. The importance of the light intensity was demonstrated by the higher values of generated current during the day than at night, indicating light-dependent photosynthetic processes. Considering that sunlight offers an unlimited source of energy, the development of self-sustainable MSCs that rely on light as an energy source will become an increasingly important area of research in the future. In accordance with the MSC, we developed a photosynthetic cathode-based microbial fuel cell (MFC), showing that the use of cyanobacteria can be useful as well as efficient and sustainable catalysts for the cathode since they act as oxygenators.
Keywords :
electrochemical electrodes; microbial fuel cells; photosynthesis; solar cells; PCC 6803; anode-cathode chambers; cyanobacteria synechocystis; laser-machined methyl methacrylate substrates; light intensity; light-dependent photosynthetic process; microsized microbial solar cell; oxygenators; photosynthetic bacterial electrogenic capabilities; photosynthetic cathode-based microbial fuel cell; sustainable catalyst; sustainable energy; Biological cells; Biomembranes; Cathodes; Cells (biology); Energy conservation; Microorganisms; Nanomaterials; Photosynthesis; Protons; Solar cells; Sustainable development;
Journal_Title :
Nanotechnology Magazine, IEEE
DOI :
10.1109/MNANO.2014.2310073