Solar chargers based on new dye-based photovoltaic modules and new supercapacitors

Authors

  • Ireneusz Plebankiewicz Military Institute of Engineer Technology, ul. Obornicka 136, 50-961 Wrocław, Poland https://orcid.org/0000-0002-0077-5215
  • Krzysztof. A. Bogdanowicz Military Institute of Engineer Technology, ul. Obornicka 136, 50-961 Wrocław, Poland https://orcid.org/0000-0001-8526-626X
  • Paweł Kwaśnicki Research & Development Centre for Photovoltaics, ML System S.A. Zaczernie 190G, 36-062 Zaczernie, Poland; Department of Physical Chemistry and Physicochemical Basis of Environmental Engineering, Institute of Environmental Engineering in Stalowa Wola, John Paul II Catholic University of Lublin, ul. Ofiar Katynia 6, 37-450 Stalowa Wola Poland
  • Magdalena Skunik-Nuckowska Faculty of Chemistry, Warsaw University, ul. Pasteura 1, 02-093 Warsaw, Poland
  • Patryk M. Rączka Department of Physical Chemistry and Physicochemical Basis of Environmental Engineering, Institute of Environmental Engineering in Stalowa Wola, John Paul II Catholic University of Lublin, ul. Ofiar Katynia 6, 37-450 Stalowa Wola Poland
  • Paweł Kulesza Faculty of Chemistry, Warsaw University, ul. Pasteura 1, 02-093 Warsaw, Poland
  • Agnieszka Iwan Military Institute of Engineer Technology, ul. Obornicka 136, 50-961 Wrocław, Poland https://orcid.org/0000-0002-7705-6577
  • Wojciech Przybył Military Institute of Engineer Technology, ul. Obornicka 136, 50-961 Wrocław, Poland

DOI:

https://doi.org/10.24425/bpasts.2023.146452

Abstract

Electricity storage is one of the best-known methods of balancing the energy supply and demand at a given moment. The article presents an innovative solution for the construction of an electric energy storage device obtained from an innovative photovoltaic panel made of new dye-based photovoltaic modules and newly developed supercapacitors – which can be used as an emergency power source. In the paper, for the first time, we focused on the successful paring of new dye-sensitized solar cell (DSSC) with novel supercapacitors. In the first step, a microprocessor stand was constructed using Artificial Intelligence algorithms to control the parameters of the environment, as well as the solar charger composed of six DSSC cells with the dimensions of 100_100 mm and 126 CR2032 coin cells with a total capacitance of 60 F containing redox-active aqueous electrolyte. It was proven that the solar charger store enough energy to power, i.e. SOS transmitter or igniters, using a 5 V signal.

Downloads

Published

2023-06-30

How to Cite

Plebankiewicz, Ireneusz, et al. “Solar Chargers Based on New Dye-Based Photovoltaic Modules and New Supercapacitors”. Bulletin of the Polish Academy of Sciences Technical Sciences, vol. 71, no. 4, June 2023, p. e146452, doi:10.24425/bpasts.2023.146452.

Issue

Section

Articles

Similar Articles

<< < 4 5 6 7 8 9 10 11 12 13 > >> 

You may also start an advanced similarity search for this article.