Novel macromolecules derived from coumarin: synthesis and antioxidant activity

Новые макромолекулы на основе кумарина: синтез и антиоксидантная активность
Ahmed A. Al‐Amiery, Yasameen K. Al-Majedy, Abdul Amir H. Kadhum, Abu Bakar Mohamad
2015-07-02

2-Aminothiazolidin-4-one4-HydroxycoumarinAntioxidant activityDPPH radical scavengingFourier-transform infrared spectroscopy
The rational design of 4-hydroxycoumarins with tailor-made antioxidant activities is required nowadays due to the wide variety of pharmacologically significant, structurally interesting of coumarins and researcher orientation toward green chemistry and natural products. A simple and unique coumarins have been achieved by reaction of 4-hydroxycoumarin with aromatic aldehyde accompanied with the creation of a macromolecules have 2-aminothiazolidin-4-one. The molecular structures of the compounds were characterized by the Fourier transformation infrared and Nuclear magnetic resonance spectroscopies, in addition to CHN analysis. The scavenging abilities of new compounds against stable DPPH radical (DPPH•) and hydrogen peroxide were done and the results show that the compounds exhibited high antioxidant activates.
1
Novel coumarin-derived macromolecules containing 2-aminothiazolidin-4-one units were synthesized from 4-hydroxycoumarin and aromatic aldehydes.
2
The new compounds showed high antioxidant activity in scavenging assays against the stable DPPH radical and hydrogen peroxide.
3
The synthesized compounds were structurally characterized using Fourier-transform infrared spectroscopy, nuclear magnetic resonance spectroscopy, and CHN elemental analysis.
4
The work demonstrates a synthetic approach for designing 4-hydroxycoumarin derivatives with tailored antioxidant properties, aligned with green-chemistry and natural-product research goals.

Novel 4-hydroxycoumarin-derived macromolecules containing 2-aminothiazolidin-4-one units

The antioxidant activity and radical-scavenging ability of the synthesized macromolecules against DPPH• and hydrogen peroxide

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2015-07-02
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Ahmed A. Al‐Amiery
Yasameen K. Al-Majedy
Abdul Amir H. Kadhum
Abu Bakar Mohamad
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