Photosystem I application in biohybrid polymer solar cells
The use of Bio-photonic systems has attracted a lot of attention recently specially in the field of solar energy conversion and photovoltaic materials the use of photosynthetic organs of plants is very promising. The energy conversion in the process of photosynthesis is close to 100% and it’s enviro...
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doaj-48a7d21392474dd885541589b40cb1b12020-11-24T22:10:54ZengAIP Publishing LLCAIP Advances2158-32262018-09-0189095319095319-810.1063/1.5030777079809ADVPhotosystem I application in biohybrid polymer solar cellsShahriar Molamohammadi0Yousef Seyed Jalili1Gholamhossein Riazi2Nano-Optoelectronics Laboratory, Sheykh Bahaee Research Complex, Science and Research Branch, Islamic Azad University, Tehran 1477893855, IranNano-Optoelectronics Laboratory, Sheykh Bahaee Research Complex, Science and Research Branch, Islamic Azad University, Tehran 1477893855, IranNeuro-Organic Laboratory, Institute of Biochemistry and Biophysics (I.B.B), University of Tehran, Tehran 1417466191, IranThe use of Bio-photonic systems has attracted a lot of attention recently specially in the field of solar energy conversion and photovoltaic materials the use of photosynthetic organs of plants is very promising. The energy conversion in the process of photosynthesis is close to 100% and it’s environmental compatibly are the main reasons for why photosynthesis has attracted the attention of energy system designers and researchers. The way of solar energy conversion in photosynthesis indicates a great potential as a fount of renewable energy. Use of the photosynthetic components in photosensors and photovoltaic devices solitarily, has disadvantages such as low extracted current compared to other kinds of photovoltaic materials. Accordingly, for more useful and better application, these photosynthetic components could be used as the optimizer of the other species of photovoltaic materials and solar cells. photosystem1 protein complex, which is the main member of photosynthetic components has maximum absorption spectrum wavelength at 430nm and 665nm. Therefore, it can be an appropriate complement for polymeric solar cells with their absorption spectrum at the green wavelength region. In this paper we have used the photosystem1 protein complex in the inverted polymer solar cell with structure of ITO/P3HT:ICBA/PS1/Al and positive results have been observed. So that the polymer solar cells efficiency was enhanced from 4.3% to 4.53%.http://dx.doi.org/10.1063/1.5030777 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Shahriar Molamohammadi Yousef Seyed Jalili Gholamhossein Riazi |
spellingShingle |
Shahriar Molamohammadi Yousef Seyed Jalili Gholamhossein Riazi Photosystem I application in biohybrid polymer solar cells AIP Advances |
author_facet |
Shahriar Molamohammadi Yousef Seyed Jalili Gholamhossein Riazi |
author_sort |
Shahriar Molamohammadi |
title |
Photosystem I application in biohybrid polymer solar cells |
title_short |
Photosystem I application in biohybrid polymer solar cells |
title_full |
Photosystem I application in biohybrid polymer solar cells |
title_fullStr |
Photosystem I application in biohybrid polymer solar cells |
title_full_unstemmed |
Photosystem I application in biohybrid polymer solar cells |
title_sort |
photosystem i application in biohybrid polymer solar cells |
publisher |
AIP Publishing LLC |
series |
AIP Advances |
issn |
2158-3226 |
publishDate |
2018-09-01 |
description |
The use of Bio-photonic systems has attracted a lot of attention recently specially in the field of solar energy conversion and photovoltaic materials the use of photosynthetic organs of plants is very promising. The energy conversion in the process of photosynthesis is close to 100% and it’s environmental compatibly are the main reasons for why photosynthesis has attracted the attention of energy system designers and researchers. The way of solar energy conversion in photosynthesis indicates a great potential as a fount of renewable energy. Use of the photosynthetic components in photosensors and photovoltaic devices solitarily, has disadvantages such as low extracted current compared to other kinds of photovoltaic materials. Accordingly, for more useful and better application, these photosynthetic components could be used as the optimizer of the other species of photovoltaic materials and solar cells. photosystem1 protein complex, which is the main member of photosynthetic components has maximum absorption spectrum wavelength at 430nm and 665nm. Therefore, it can be an appropriate complement for polymeric solar cells with their absorption spectrum at the green wavelength region. In this paper we have used the photosystem1 protein complex in the inverted polymer solar cell with structure of ITO/P3HT:ICBA/PS1/Al and positive results have been observed. So that the polymer solar cells efficiency was enhanced from 4.3% to 4.53%. |
url |
http://dx.doi.org/10.1063/1.5030777 |
work_keys_str_mv |
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