SYNTHESIS OF COPPER-CONTAINING PHTHALOCYANINE FOR THE MANUFACTURE OF A HIGHLY EFFICIENT SOLAR CELL

Main Article Content

Mustafaev, M.N.
Karimov, M.U.
Djalilov, A.T.

Abstract

This scientific paper provides concise information on solar panels, describes the synthesis process of the phthalocyanine pigment used in the production of solar cells, and presents its infrared (IR) spectral analysis. A copper-based phthalocyanine sample was analyzed using a PerkinElmer Fourier-transform infrared spectrometer (FTIR), which resulted in the identification of existing functional groups. According to the spectral data, peaks characteristic of aromatic rings, carbonyl, hydroxyl, ether, nitrile, and metal-oxygen (Cu-O) bonds were detected in the sample. The obtained results confirm the presence of a phytochemical compound in the sample that forms a complex with copper ions. This analysis is crucial for an in-depth study of the composition of phthalocyanine-based solar cells and for evaluating the potential to enhance their photoelectric efficiency.

Downloads

Download data is not yet available.

Article Details

Section

Chemical Technology and Construction

How to Cite

Mustafaev, M.-A. N., Karimov, M. U., & Djalilov, A. T. (2025). SYNTHESIS OF COPPER-CONTAINING PHTHALOCYANINE FOR THE MANUFACTURE OF A HIGHLY EFFICIENT SOLAR CELL. Digital Technologies in Industry, 3(3), 169-172. https://doi.org/10.70769/3030-3214.SRT.3.3.2025.15

References

1. Shukurov, D. Kh., Turaev, Kh. Kh., Kholnazarov, B. A., Kasimov, Sh. A., Jumaeva, Z. E., & Tillayev, Kh. R. (2023). Synthesis of zinc phthalocyanine pigment and its application to new generation solar cells. International Journal of Engineering Trends and Technology, 71(4), 453–461. https://doi.org/10.14445/22315381/IJETT-V71I4P238 DOI: https://doi.org/10.14445/22315381/IJETT-V71I4P238

2. Богуславский, Е. Г., Прохорова, С. А., & Надолинный, В. А. (2005). Эволюция упорядоченных пленок фталоцианина меди по данным ЭПР. Журнал структурной химии, 46(4), 1055–1063.

3. Diacon, A., Rusen, E., Boscornea, C., Pandele, A. M., & Cincu, C. (2011). New phthalocyanine-fullerene dyads sensitizers for solar cells. UPB Scientific Bulletin, Series B, 73(3), 87–98.

4. Geerts, Y. H., Debever, O., Amato, C., & Sergeyev, S. (2009). Synthesis of mesogenic phthalocyanine-C60 donor-acceptor dyads designed for molecular heterojunction photovoltaic devices. Beilstein Journal of Organic Chemistry, 5(49). https://doi.org/10.3762/bjoc.5.49 DOI: https://doi.org/10.3762/bjoc.5.49

5. Fayziyev, J. B., Djalilov, A. T., & Tillayev, A. T. (2019). Tarkibida metal tutgan yangi ftalosianin pigmentini tadqiq qilish [Study of a new metal-containing phthalocyanine pigment]. [Unpublished/Local source].

6. Исмаилов, Ф. С., и др. (2024). Испытание на прочность бетонных смесей с добавлением суперпластификаторов и базальтовой фибры. Universum: технические науки, 6(10[127]), 15–18.

Most read articles by the same author(s)

Similar Articles

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