Optimization of Titanium Dioxide Nanoparticles in Mesoporous Electron Transport Layer Perovskite Solar Cell

Augustine, Deborah and Rosa, Erlyta Septa and Prastomo, Niki and Shobih, Shobih (2020) Optimization of Titanium Dioxide Nanoparticles in Mesoporous Electron Transport Layer Perovskite Solar Cell. Jurnal Elektronika dan Telekomunikasi, 20 (1). pp. 23-28. ISSN 2527-9955

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Abstract

Research about mesoporous TiO2 as an electron transport layer in perovskite solar cell has been done to obtain the best fabricated cell’s performance. In this research, the concentrations of opaque and transparent TiO2 nanoparticle were varied, in order to optimize the TiO2 mesoporous electron transport layer in FTO/CL-TiO2/MS-TiO2/Perovskite/P3HT/Ag perovskite-based solar cell. Morphological, optical, and electrical characteristics of TiO2 layers were investigated using scanning electron microscopy (SEM), four-point probe (FPP), and UV-Vis spectroscopy. The influences of those characteristics in solar cell performance were analyzed by using illumination of sun simulator with a light intensity of 500 W/m2. The results showed that transparent TiO2 has a higher conductivity and transmittance compared to the opaque TiO2. The concentration of TiO2 solutionin1:17 ratio resulted in higher electrical performance in both the transparent and opaque TiO2 layer. The best perovskite solar cell performance with PCE of 0.37% was achieved from the sample using TiO2 transparent layer with a concentration of 1:7 ratio.

Item Type: Article
Creators:
  1. Augustine, Deborah
  2. Rosa, Erlyta Septa
  3. Prastomo, Niki
  4. Shobih, Shobih
Contributors:
Keywords: mesoporous TiO2, electron transport layer, perovskite solar cell.
Subjects: 500 Science and Mathematic > 500 Science > 507 Education, Research, Related Topics
Sustainable Development Goals: Goal 13. Take urgent action to combat climate change and its impacts
Goal 07. Ensure access to affordable, reliable, sustainable and modern energy for all
Goal 09. Build resilient infrastructure, promote inclusive and sustainable industrialization and foster innovation
Divisions: Faculty of Engineering & Informatics > Engineering Physics
Date Deposited: 09 Dec 2021 17:49
URI: https://kc.umn.ac.id/id/eprint/19456

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