Pengaruh Penambahan Aditif Diethanolamine (DEA) pada Ukuran Kristal Semikonduktor Copper Tin Oxide (CuSnO3) dengan Metode Sol-Gel

The Effect of Adding Diethanolamine (DEA) as an Additive on the Size of Copper Tin Oxide (CuSnO3) Semiconductor Crystals Using the Sol-Gel Method

Page Numbers: 314-319
Published
2023-11-06
Digital Object Identifier: 10.58578/ajstea.v1i2.2064
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  • Lilis Karlina Universitas Negeri Padang
  • Hary Sanjaya Universitas Negeri Padang

Abstract

This research involves the synthesis of Copper Tin Oxide (CuSnO3) using the sol-gel method. The synthesized CuSnO3 was characterized by X-Ray Difraction (XRD) to obtain the crystal size using the Debye-Scherrer equation. The crystal sizes obtained by adding 0 mL DEA and 2 mL DEA were 21.05 nm and 47.9 nm. There was an increase in crystal size with increasing DEA additive volume.

Keywords: Copper Tin Oxide (CuSnO3); Sol-Gel Method; Diethanolamine (DEA); Crystal Size

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How to Cite
Karlina, L., & Sanjaya, H. (2023). Pengaruh Penambahan Aditif Diethanolamine (DEA) pada Ukuran Kristal Semikonduktor Copper Tin Oxide (CuSnO3) dengan Metode Sol-Gel. Asian Journal of Science, Technology, Engineering, and Art, 1(2), 314-319. https://doi.org/10.58578/ajstea.v1i2.2064

References

Borhade, V., Tope, D. R., & Sangle, S. L. (2019). “ Synthesis , Characterization and Photocatalytic application of CuSnO 3 Perovskite oxide .” 6(3), 382–386.
Hamid, A., Pembimbing, D., Magister, P., Keahlian, B., Anorganik, K., Kimia, J., … Alam, P. (2015). Sintesis Zsm-5 Mesopori Dari Kaolin Dan Silika Koloid Dengan Dua Tahap Kristalisasi : Pengaruh Suhu Dan Waktu Synthesis of Mesoporous Zsm-5 From Kaolin and Colloidal Silica With Two Step Crystallization : Influence of Temperature and Aging Time.
Ilican, S., Caglar, Y., Caglar, M., & Yakuphanoglu, F. (2008). Structural, optical and electrical properties of F-doped ZnO nanorod semiconductor thin films deposited by sol-gel process. Applied Surface Science, 255(5 PART 1), 2353–2359. https://doi.org/10.1016/j.apsusc.2008.07.111
Kasuma Warda Ningsih, S., Nasra, E., Yanna Rahayu Jurusan Kimia, dan, Matematika dan Ilmu Pengetahuan Alam, F., Negeri Padang Jl Hamka, U., & Tawar, A. (2020). Indonesian Journal of Chemical Science Sintesis dan Karakterisasi Nanopartikel Co 2+ doped ZnO dengan Menggunakan Metode Sol-Gel. J. Chem. Sci, 9(1), 2–8. Retrieved from http://journal.unnes.ac.id/sju/index.php/ijcs
Liu, T., Du, R. bin, & Kong, X. jun. (2012). Preparation and electrochemical properties of amorphous tin-copper composite oxide CuSnO 3. Advanced Materials Research, 535–537(Cl), 31–35. https://doi.org/10.4028/www.scientific.net/AMR.535-537.31
Ningsih, S. K. W. (2016). Sintesis Anorganik. In Angewandte Chemie International Edition, 6(11), 951–952.
Ramadani, I. W. S. (2015). Karakterisasi Koreksi Pelebaran Puncak dan 2θ pada Analisis Difraksi Sinar-X. Thesis, 108.
Saini, K. K., Sharma, S. D., Chanderkant, Kar, M., Singh, D., & Sharma, C. P. (2007). Structural and optical properties of TiO2 thin films derived by sol-gel dip coating process. Journal of Non-Crystalline Solids, 353(24–25), 2469–2473. https://doi.org/10.1016/j.jnoncrysol.2006.12.017
Wang, B., Biesold, G. M., & Lin, Z. (2021). Chem Soc Rev development of solar cell , photoelectrocatalytic and photocatalytic applications. https://doi.org/10.1039/d0cs01134g
Wang, M., Guo, Y., Zhu, Z., Liu, Q., Sun, T., Cui, H., & Tang, Y. (2021). Diethanolamine-assisted and morphology controllable synthesis of ZnO with enhanced photocatalytic activities. Materials Letters, 299, 130114. https://doi.org/10.1016/j.matlet.2021.130114
Widodo, S. (2010). Teknologi Sol Gel pada Pembuatan Nano Kristalin Metal Oksida untuk Aplikasi Sensor Gas. Seminar Rekayasa Kimia Dan Proses 2010, E201–E208.

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