Araştırma Makalesi

Enzymatic Oligomerization of Ampyrone- and Phenylhydrazine-Based Monomers: Structural, Thermal, and Antioxidant Functional Analysis

Cilt: 15 Sayı: 3 30 Eylül 2026
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Enzymatic Oligomerization of Ampyrone- and Phenylhydrazine-Based Monomers: Structural, Thermal, and Antioxidant Functional Analysis

Öz

In this study, 2,4-dihydroxybenzaldehyde was subjected to separate condensation reactions with phenylhydrazine and ampyrone (4‑amino antipyrine), yielding a hydrazine‑based monomer (M‑PHy) and an azomethine monomer (M‑Amp), respectively. Both monomers were subsequently polymerized via horseradish peroxidase/hydrogen peroxide (HRP/H₂O₂)–mediated enzymatic oxidative oligomerization, affording two novel oligomeric products, O‑PHy and O‑Amy. The chemical structures of all synthesized compounds were confirmed by FT‑IR, UV‑Vis, and ¹H NMR spectroscopic analyses. Molecular weight distributions of the oligomers were determined using gel permeation chromatography (GPC). Thermal properties were evaluated by thermogravimetric analysis (TGA), revealing initial decomposition temperatures of 178 °C for O‑PHy and 192 °C for O‑Amy, with residual masses of 16.5% and 15.6% at 1000 °C, respectively. Surface morphologies of the oligomers were examined by scanning electron microscopy (SEM), demonstrating distinct microstructural features associated with their molecular architectures. These findings highlight the successful synthesis, structural verification, and physicochemical characterization of two new enzymatically derived oligomers.

Anahtar Kelimeler

Destekleyen Kurum

This study was carried out at Istanbul Health and Technology University.

Etik Beyan

This study adheres to scientific research and publication ethics. The study does not involve any human or animal experiments, surveys, interviews, clinical procedures, or processes involving personal data that would require ethical committee approval. All experimental work was conducted in a laboratory setting focusing on chemical synthesis and characterization. There are no conflicts of interest in this study, and all authors have made significant contributions and approved the final version of the article.

Teşekkür

This study was made possible thanks to the laboratory infrastructure, research facilities, and academic support provided by Istanbul University of Health and Technology. I would like to express my sincere gratitude to Istanbul University of Health and Technology for their contributions, guidance, and the scientific environment they provided throughout the research process.

Kaynakça

  1. Tafere DA, Gebrezgiabher M, Elemo F, et al. Hydrazones, hydrazones-based coinage metal complexes, and their biological applications. RSC Adv. 2025;15(8):6191–6207.
  2. Manna SK, Gangopadhyay A, Maiti K, et al. Recent Developments in Fluorometric and Colorimetric Chemodosimeters Targeted towards Hydrazine Sensing: Present Success and Future Possibilities. ChemistrySelect. 2019;4(24):7219–7245.
  3. Çınarlı M. Synthesis, characterization and investigation of biological activities of Schiff base and its Ni(II) complex obtained from 2-Benzoylpyridine and 3-Hydroxy-2-naphthoic hydrazide. Erzincan Üniversitesi Fen Bilimleri Enstitüsü Dergisi. 2024;17(2):364–376.
  4. Gabrielli L, Hunter CA. Supramolecular catalysis by recognition-encoded oligomers: discovery of a synthetic imine polymerase. Chem Sci. 2020;11(28):7408–7414.
  5. Aboafia SA, Elsayed SA, El-Sayed AKA, et al. New transition metal complexes of 2,4-dihydroxybenzaldehyde benzoylhydrazone Schiff base (H2dhbh): Synthesis, spectroscopic characterization, DNA binding/cleavage and antioxidant activity. J Mol Struct. 2018;1158:39–50.
  6. Wahba RH, AbouElleef EM, Gomaa EA, et al. Antimicrobial, antibiofilm, antioxidant activities and molecular docking of Schiff base and its complexes of Cu(II), Co(II), Ni(II), Mn(II) and UO2(II). Sci Rep. 2026;16(1):17519.
  7. Mahajan JS, O’Dea RM, Norris JB, et al. Aromatics from Lignocellulosic Biomass: A Platform for High-Performance Thermosets. ACS Sustain Chem Eng. 2020;8(40):15072–15096.
  8. Heydari N, Karimi AR, Momeni HR, et al. Chitosan Schiff-Base Hydrogel Sunscreen: A Multifunctional Hybrid Network with Antioxidant, Ultraviolet-Shielding, and Self-Healing Properties. ACS Omega. 2025;10(8):8250–8261.

Ayrıntılar

Birincil Dil

İngilizce

Konular

Kataliz ve Reaksiyon Mekanizmaları, Fiziksel Kimya (Diğer)

Bölüm

Araştırma Makalesi

Yayımlanma Tarihi

30 Eylül 2026

Gönderilme Tarihi

4 Şubat 2026

Kabul Tarihi

3 Ağustos 2026

Yayımlandığı Sayı

Yıl 2026 Cilt: 15 Sayı: 3

Kaynak Göster

APA
Temizkan Ozdamar, K. (2026). Enzymatic Oligomerization of Ampyrone- and Phenylhydrazine-Based Monomers: Structural, Thermal, and Antioxidant Functional Analysis. Turkish Journal of Nature and Science, 15(3), 163-174. https://doi.org/10.46810/tdfd.1882230
AMA
1.Temizkan Ozdamar K. Enzymatic Oligomerization of Ampyrone- and Phenylhydrazine-Based Monomers: Structural, Thermal, and Antioxidant Functional Analysis. TDFD. 2026;15(3):163-174. doi:10.46810/tdfd.1882230
Chicago
Temizkan Ozdamar, Kevser. 2026. “Enzymatic Oligomerization of Ampyrone- and Phenylhydrazine-Based Monomers: Structural, Thermal, and Antioxidant Functional Analysis”. Turkish Journal of Nature and Science 15 (3): 163-74. https://doi.org/10.46810/tdfd.1882230.
EndNote
Temizkan Ozdamar K (01 Eylül 2026) Enzymatic Oligomerization of Ampyrone- and Phenylhydrazine-Based Monomers: Structural, Thermal, and Antioxidant Functional Analysis. Turkish Journal of Nature and Science 15 3 163–174.
IEEE
[1]K. Temizkan Ozdamar, “Enzymatic Oligomerization of Ampyrone- and Phenylhydrazine-Based Monomers: Structural, Thermal, and Antioxidant Functional Analysis”, TDFD, c. 15, sy 3, ss. 163–174, Eyl. 2026, doi: 10.46810/tdfd.1882230.
ISNAD
Temizkan Ozdamar, Kevser. “Enzymatic Oligomerization of Ampyrone- and Phenylhydrazine-Based Monomers: Structural, Thermal, and Antioxidant Functional Analysis”. Turkish Journal of Nature and Science 15/3 (01 Eylül 2026): 163-174. https://doi.org/10.46810/tdfd.1882230.
JAMA
1.Temizkan Ozdamar K. Enzymatic Oligomerization of Ampyrone- and Phenylhydrazine-Based Monomers: Structural, Thermal, and Antioxidant Functional Analysis. TDFD. 2026;15:163–174.
MLA
Temizkan Ozdamar, Kevser. “Enzymatic Oligomerization of Ampyrone- and Phenylhydrazine-Based Monomers: Structural, Thermal, and Antioxidant Functional Analysis”. Turkish Journal of Nature and Science, c. 15, sy 3, Eylül 2026, ss. 163-74, doi:10.46810/tdfd.1882230.
Vancouver
1.Kevser Temizkan Ozdamar. Enzymatic Oligomerization of Ampyrone- and Phenylhydrazine-Based Monomers: Structural, Thermal, and Antioxidant Functional Analysis. TDFD. 01 Eylül 2026;15(3):163-74. doi:10.46810/tdfd.1882230