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Eco-Friendly Green Synthesis of Zinc Oxide Nano/Microparticles Using Aqueous Leaf Extract of Polygonum cognatum Meisn. Plant

Yıl 2024, Cilt: 28 Sayı: 5, 984 - 999

Öz

The environmentally friendly plant-based green synthesis approach provides a fabulous opportunity to produce versatile zinc oxide powders with multifarious morphology and/or size. In this study, it was mainly aimed at using Polygonum cognatum Meisn. extract to synthesize zinc oxide powder via a simple green synthesis route. For this purpose, zinc nitrate solution was mixed with an aqueous extract of fresh Polygonum cognatum Meisn. plant leaves to obtain a zinc-based precursor, and then zinc oxide powder was synthesized by means of calcination conducted at 400°C for 2 hours in air. Phase, spectroscopic, and microstructural analysis techniques, as well as Rietveld refinement method and Williamson-Hall analysis, were performed to investigate the powder characteristics. It was found that the synthesized high-purity zinc oxide powder had a hexagonal wurtzite crystal structure. Zinc oxide powder was observed to have a particularly large amount of nano-sized equiaxed particles (~25 nm in average diameter) together with micron-sized hourglass-like particles consisting of two hexagonal prisms (each <1 μm in height). All in all, the main implication of our research is that the Polygonum cognatum Meisn. plant can be potentially used as a biomass source for the green synthesis of zinc oxide nano/microparticles.

Kaynakça

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Yıl 2024, Cilt: 28 Sayı: 5, 984 - 999

Öz

Kaynakça

  • A. Czyżowska, A. Barbasz, “A review: zinc oxide nanoparticles – friends or enemies?,” International Journal of Environmental Health, vol. 32, no. 4, pp. 885–901, 2022.
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  • C. B. Ong, L. Y. Ng, A. W. Mohammad, “A review of ZnO nanoparticles as solar photocatalysts: Synthesis, mechanisms and applications,” Renewable and Sustainable Energy Reviews, vol. 81, pp. 536–551, Jan. 2018.
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  • D.-M. Radulescu, V.-A. Surdu, A. Ficai, D. Ficai, A.-M. Grumezescu, E. Andronescu, “Green synthesis of metal and metal oxide nanoparticles: A review of the principles and biomedical applications,” International Journal of Molecular Sciences, vol. 24, no. 20, 2023, Art. no. 15397.
  • J. Singh, T. Dutta, K.-H. Kim, M. Rawat, P. Samddar, P. Kumar, “‘Green’ synthesis of metals and their oxide nanoparticles: applications for environmental remediation,” Journal of Nanobiotechnology, vol. 16, no. 1, 2018, Art. no. 84.
  • H. Al Jabri, M. H. Saleem, M. Rizwan, I. Hussain, K. Usman, M. Alsafran, “Zinc Oxide nanoparticles and their biosynthesis: Overview,” Life, vol. 12, no. 4, Apr. 2022, Art. no. 594.
  • J. Xu, Y. Huang, S. Zhu, N. Abbes, X. Jing, L. Zhang, “A review of the green synthesis of ZnO nanoparticles using plant extracts and their prospects for application in antibacterial textiles,” Journal of Engineered Fibers and Fabrics, vol. 16, 2021, Art. no. 15589250211046242.
  • A. Kavitha, A. Doss, R. P. Praveen Pole, T. P. K. Pushpa Rani, R. Prasad, S. Satheesh, “A mini review on plant-mediated zinc oxide nanoparticles and their antibacterial potency,” Biocatalysis and Agricultural Biotechnology, vol. 48, Mar. 2023, Art. no. 102654.
  • A. G. Kaningini, S. Azizi, N. Sintwa, K. Mokalane, K. C. Mohale, F. N. Mudau, M. Maaza, “Effect of optimized precursor concentration, temperature, and doping on optical properties of ZnO nanoparticles synthesized via a green route using bush tea (Athrixia phylicoides DC.) leaf extracts,” ACS Omega, vol. 7, no. 36, pp. 31658–31666, Sep. 2022.
  • V. Batra, I. Kaur, D. Pathania, Sonu, V. Chaudhary, “Efficient dye degradation strategies using green synthesized ZnO-based nanoplatforms: A review,” Applied Surface Science Advances, vol. 11, Oct. 2022, Art. no. 100314.
  • G. T. Tran, N. T. H. Nguyen, N. T. T. Nguyen, T. T. T. Nguyen, D. T. C. Nguyen, T. V. Tran, “Formation, properties and applications of microalgae-based ZnO nanoparticles: A review,” Journal of Environmental Chemical Engineering, vol. 11, no. 5, Oct. 2023, Art. no. 110939.
  • M. Naseer, U. Aslam, B. Khalid, B. Chen, “Green route to synthesize zinc oxide nanoparticles using leaf extracts of Cassia fistula and Melia azadarach and their antibacterial potential,” Scientific Reports, vol. 10, no. 1, 2020, Art. no. 9055.
  • S. Faisal, H. Jan, S. A. Shah, S. Shah, A. Khan, M. T. Akbar, M. Rizwan, F. Jan, Wajidullah, N. Akhtar, A. Khattak, S. Syed, “Green synthesis of zinc oxide (ZnO) nanoparticles using aqueous fruit extracts of Myristica fragrans: Their characterizations and biological and environmental Applications,” ACS Omega, vol. 6, no. 14, pp. 9709–9722, Apr. 2021.
  • B. Naiel, M. Fawzy, M. W. A. Halmy, A. E. D. Mahmoud, “Green synthesis of zinc oxide nanoparticles using Sea Lavender (Limonium pruinosum L. Chaz.) extract: characterization, evaluation of anti-skin cancer, antimicrobial and antioxidant potentials,” Scientific Reports, vol. 12, no. 1, 2022, Art. no. 20370.
  • T. U. Doan Thi, T. T. Nguyen, Y. D. Thi, K. H. Ta Thi, B. T. Phan, K. N. Pham, “Green synthesis of ZnO nanoparticles using orange fruit peel extract for antibacterial activities,” RSC Advances, vol. 10, no. 40, pp. 23899–23907, 2020.
  • J. Ali, S. Bibi, W. B. Jatoi, M. Tuzen, M. A. Jakhrani, X. Feng, T. A. Saleh, “Green synthesized zinc oxide nanostructures and their applications in dye-sensitized solar cells and photocatalysis: A review,” Materials Today Communications, vol. 36, Aug. 2023, Art. no. 106840.
  • R. Álvarez-Chimal, V. I. García-Pérez, M. A. Álvarez-Pérez, R. Tavera-Hernández, L. Reyes-Carmona, M. Martínez-Hernández, J. Á. Arenas-Alatorre, “Influence of the particle size on the antibacterial activity of green synthesized zinc oxide nanoparticles using Dysphania ambrosioides extract, supported by molecular docking analysis,” Arabian Journal of Chemistry, vol. 15, no. 6, Jun. 2022, Art. no. 103804.
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Toplam 69 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular İnorganik Kimya (Diğer), Malzeme Üretim Teknolojileri, Malzeme Mühendisliği (Diğer)
Bölüm Araştırma Makalesi
Yazarlar

Erdem Akça 0000-0003-3391-627X

Erken Görünüm Tarihi 14 Ekim 2024
Yayımlanma Tarihi
Gönderilme Tarihi 4 Mayıs 2024
Kabul Tarihi 6 Ağustos 2024
Yayımlandığı Sayı Yıl 2024 Cilt: 28 Sayı: 5

Kaynak Göster

APA Akça, E. (2024). Eco-Friendly Green Synthesis of Zinc Oxide Nano/Microparticles Using Aqueous Leaf Extract of Polygonum cognatum Meisn. Plant. Sakarya University Journal of Science, 28(5), 984-999.
AMA Akça E. Eco-Friendly Green Synthesis of Zinc Oxide Nano/Microparticles Using Aqueous Leaf Extract of Polygonum cognatum Meisn. Plant. SAUJS. Ekim 2024;28(5):984-999.
Chicago Akça, Erdem. “Eco-Friendly Green Synthesis of Zinc Oxide Nano/Microparticles Using Aqueous Leaf Extract of Polygonum Cognatum Meisn. Plant”. Sakarya University Journal of Science 28, sy. 5 (Ekim 2024): 984-99.
EndNote Akça E (01 Ekim 2024) Eco-Friendly Green Synthesis of Zinc Oxide Nano/Microparticles Using Aqueous Leaf Extract of Polygonum cognatum Meisn. Plant. Sakarya University Journal of Science 28 5 984–999.
IEEE E. Akça, “Eco-Friendly Green Synthesis of Zinc Oxide Nano/Microparticles Using Aqueous Leaf Extract of Polygonum cognatum Meisn. Plant”, SAUJS, c. 28, sy. 5, ss. 984–999, 2024.
ISNAD Akça, Erdem. “Eco-Friendly Green Synthesis of Zinc Oxide Nano/Microparticles Using Aqueous Leaf Extract of Polygonum Cognatum Meisn. Plant”. Sakarya University Journal of Science 28/5 (Ekim 2024), 984-999.
JAMA Akça E. Eco-Friendly Green Synthesis of Zinc Oxide Nano/Microparticles Using Aqueous Leaf Extract of Polygonum cognatum Meisn. Plant. SAUJS. 2024;28:984–999.
MLA Akça, Erdem. “Eco-Friendly Green Synthesis of Zinc Oxide Nano/Microparticles Using Aqueous Leaf Extract of Polygonum Cognatum Meisn. Plant”. Sakarya University Journal of Science, c. 28, sy. 5, 2024, ss. 984-99.
Vancouver Akça E. Eco-Friendly Green Synthesis of Zinc Oxide Nano/Microparticles Using Aqueous Leaf Extract of Polygonum cognatum Meisn. Plant. SAUJS. 2024;28(5):984-99.

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