The major source of green energy is solar energy. Many ways were explored and under research for harnessing this solar energy. Silicon photovoltaic cell is a well-developed technology which is easy, efficient and economic mode of converting the solar energy into electricity. This has efficiently been utilized worldwide. In addition to this, chemical solar cells like perovskite solar cell and dye-sensitized solar cell has also been evolved and researched for conversion of solar energy to electrical energy. These cells could be successfully utilized irrespective of poor strength of incident radiation. These types of solar cells are under research and still commercial development is not progressed. In this paper, the perovskite solar cell is manufactured in the lab for three different areas 1, 11.25 and 45 cm2. The perovskite solar cell is completely chemical-based solar cell. The developed cell will further be experimented in the open sun light during the period of summer when approximate light intensity reaches 1350 W/m2. The experimental observations at different interval of time are recorded and performance parameters such as voltage, current intensity, power output and efficiency of the system are evaluated. The performance of the cell will further be compared with the organic dye-based sensitized solar cell. The result shows that the performance of perovskite solar cell will be area-dependent showing increment with increase in area of cell. However, the dye-sensitized solar cell moves ahead of perovskite solar cell in achieving better power output and efficiency.

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Performance Study of Titanium Dioxide Nanomaterial-Based Perovskite Solar Cell and Comparison with Organic Dye-Sensitized Solar Cell

  • Ashish J. Chaudhari,
  • Sachet Bhakuni,
  • Vedika Patil,
  • Heena Khotekar,
  • Shrutika Pagdhare,
  • Raviraj Mishra,
  • Vinay D. Patel

摘要

The major source of green energy is solar energy. Many ways were explored and under research for harnessing this solar energy. Silicon photovoltaic cell is a well-developed technology which is easy, efficient and economic mode of converting the solar energy into electricity. This has efficiently been utilized worldwide. In addition to this, chemical solar cells like perovskite solar cell and dye-sensitized solar cell has also been evolved and researched for conversion of solar energy to electrical energy. These cells could be successfully utilized irrespective of poor strength of incident radiation. These types of solar cells are under research and still commercial development is not progressed. In this paper, the perovskite solar cell is manufactured in the lab for three different areas 1, 11.25 and 45 cm2. The perovskite solar cell is completely chemical-based solar cell. The developed cell will further be experimented in the open sun light during the period of summer when approximate light intensity reaches 1350 W/m2. The experimental observations at different interval of time are recorded and performance parameters such as voltage, current intensity, power output and efficiency of the system are evaluated. The performance of the cell will further be compared with the organic dye-based sensitized solar cell. The result shows that the performance of perovskite solar cell will be area-dependent showing increment with increase in area of cell. However, the dye-sensitized solar cell moves ahead of perovskite solar cell in achieving better power output and efficiency.