Abstract :
The synthesis of the bis-acetylacetonate zink (II) monohydrate complex [Zn(acac)2(H2O)] has been conducted. FTIR analysis, TGA-DSC, and SEM micrographic analysis performed complex characterization. The yield of the complex compound [Zn(acac)2(H2O)] was 36.24% using NaOH as a pH regulator. Based on the FTIR characterization of the typical absorption complex [Zn(acac)2(H2O)] appears at 763.88 cm-1 for Zn-O, C-H at 933.9 cm-1 and 1020 cm-1, C=C and C=O at 1516 cm-1, 1610 cm-1 and OH at 3450 cm-1 respectively. Thermal analysis of the complex shows that the decomposition temperature was obtained at 186oC. Based on the micrographic results, the complex has a non-uniform surface relief. The complex has an even distribution of pores with non-uniform pore sizes. Zn particles are deposited on the complex surface with various sizes to produce pores on the solid surface.
Keywords :
acetylacetonate, bis-acetylacetonates (II), complex compound.References :
- Ambrožič, G., Škapin, S. D., Žigon, M., & Orel, Z. C. (2010). The synthesis of zinc oxide nanoparticles from zinc acetylacetonate hydrate and 1-butanol or isobutanol. Journal of Colloid and Interface Science, 346(2), 317–323. https://doi.org/10.1016/J.JCIS.2010.03.001
- Baran, S., Tyvanchuk, Y., Penc, B., Kalychak, Y., Hoser, A., & Szytuła, A. (2020). Crystal structure and complex magnetic properties of R11Pd4In9 compounds (R = Y, Gd–Er). Intermetallics, 123, 106837. https://doi.org/10.1016/J.intermet.2020.106837
- Biswal, R., Maldonado, A., Vega-Pérez, J., Acosta, D. R., & Olvera, M. D. L. L. (2014). Indium Doped Zinc Oxide Thin Films Deposited by Ultrasonic Chemical Spray Technique, Starting from Zinc Acetylacetonate and Indium Chloride. Materials 2014, Vol. 7, Pages 5038-5046, 7(7), 5038–5046. https://doi.org/10.3390/MA7075038
- Borker, V., Bensch, W., & Rane, K. (2010). Synthesis and structure of Tris (acetylacetonato) aluminum(III) Chalcogene Chemistry View project Polyoxovanadates View project. In Article in Indian Journal of Chemistry Section a. https://www.researchgate.net/publication/279595164
- Brahma, S., & Shivashankar, S. A. (2015). Zinc acetylacetonate hydrate adducted with nitrogen donor ligands: Synthesis, spectroscopic characterization, and thermal analysis. Journal of Molecular Structure, 1101, 41–49. https://doi.org/10.1016/J.Molstruc.2015.07.075
- Chen, S., An, L., & Yang, S. (2022). Low-Molecular-Weight Fe(III) Complexes for MRI Contrast Agents. Molecules (Basel, Switzerland), 27(14). https://doi.org/10.3390/Molecules27144573
- Chesnokov, V. V., & Rostovtseva, I. A. (2019). Adducts of Zinc(II) Acetylacetonate with Various Aminoquinolines: Synthesis, Structure and Luminescence. ChemistrySelect, 4(9), 2607–2609. https://doi.org/10.1002/slct.201803840
- Feng, J., Li, J., Feng, J., Wei, Z., Wang, Z., & Song, X. (2022). Synthesis of Aliphatic Polycarbonates from Diphenyl Carbonate and Diols over Zinc (II) Acetylacetonate. Molecules 2022, Vol. 27, Page 8958, 27(24), 8958. https://doi.org/10.3390/Molecules27248958
- Gnanasoundari, V. G., & Natarajan, K. (2005). Synthesis, characterization and catalytic studies of iron(III), cobalt(II), nickel(II) and copper(II) complexes containing triphenylphosphine and β-diketones. Transition Metal Chemistry, 30(4), 433–438. https://doi.org/10.1007/s11243-005-1023-4
- Hayami, R., Tsukada, S., & Gunji, T. (2014). Synthesis and properties of b-diketonato metal complexes as a catalyst for the synthesis of polyurethane. Advance in Civil, Environmental, and Material Research.
- Matsuhashi, H. (2022). Synthesis of a Solid Base Catalyst Formed from Zinc(II) Acetylacetonate and Consisting of MgO Modified with ZnO. Catalysis Research, 2(2), 1–1. https://doi.org/10.21926/cr.2202015
- Mintari, N., Suhartana, S., & Sriatun, S. (2015). Pengaruh Variasi Jenis Pelarut pada Rendemen Sintesis Senyawa Kompleks Bis-Asetilasetonatodiaquonikel(II). Jurnal Kimia Sains Dan Aplikasi, 18(1), 29–33. https://doi.org/10.14710/JKSA.18.1.29-33
- Musić, S., Šarić, A., & Popović, S. (2010). Formation of nanosize ZnO particles by thermal decomposition of zinc acetylacetonate monohydrate. Ceramics International, 36(3), 1117–1123. https://doi.org/10.1016/J.Ceramint.2009.12.008
- Paramitha, L. D., Suhartana, S., & Pardoyo, P. (2014). Pengaruh Pelarut pada Rendemen Sintesis Senyawa Kompleks Bis-Asetilasetonatotembaga(II). Jurnal Kimia Sains Dan Aplikasi, 17(2), 48–50. https://doi.org/10.14710/JKSA.17.2.48-50
- Petrović, Ž., Ristić, M., & Musić, S. (2014). Development of ZnO microstructures produced by rapid hydrolysis of zinc acetylacetonate. Ceramics International, 40(7 PART B), 10953–10959. https://doi.org/10.1016/j.ceramint.2014.03.095
- Petrović, Ž., Ristić, M., Musić, S., & Fabián, M. (2015). Nano/microstructure and optical properties of ZnO particles precipitated from zinc acetylacetonate. Journal of Molecular Structure, 1090, 121–128. https://doi.org/10.1016/J.Molstruc.2014.11.068
- Saria, Y., Saria, Y., Lucyanti, L., Hidayati, N., & Lesbani, A. (2012). Sintesis Senyawa Kompleks Kobalt dengan Asetilasetonato. Jurnal Penelitian Sains, 15(3), 2012. https://doi.org/10.56064/jps.v15i3.107
- Šarić, A., Despotović, I., & Štefanić, G. (2019). Solvothermal synthesis of zinc oxide nanoparticles: A combined experimental and theoretical study. Journal of Molecular Structure, 1178, 251–260. https://doi.org/10.1016/j.molstruc.2018.10.025
- Soofivand, F., Tavakoli, F., & Salavati-Niasari, M. (2014). Synthesis and Characterization of Zn(acac)2 One-dimensional Nanostructures by Novel Method (Vol. 3, Issue 2).
- Zaidi, K., Bouroumane, N., Merimi, C., Aouiniti, A., Touzani, R., Oussaid, A., Hammouti, B., Salim, R., Kaya, S., & Ibrahim, S. M. (2023). Iron-ligand complex, an efficient inhibitor of steel corrosion in hydrochloric acid media. Journal of Molecular Structure, 1284, 135434. https://doi.org/10.1016/J.Molstruc.2023.135434