Investigation of Peroxidase-Like Activity of Flower-Shaped Nanobiocatalyst From Viburnum Opulus L. Extract on the Polymerization Reactions

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Date

2024

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Journal ISSN

Volume Title

Publisher

Turkish Chemical Society

Open Access Color

GOLD

Green Open Access

Yes

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Abstract

Here, we report the effects of peroxidase-mimicking activity of flower shaped hybrid nanobiocatalyst obtained from Viburnum-Opulus L. (Gilaburu) extract and Cu2+ ions on the polymerization of phenol and its derivatives (guaiacol and salicylic acid). The obtained nanoflowers exhibited quite high catalytic activity upon the polymerization of phenol and guaiacol. The yields and the number average molecular weights of the obtained polymers were significantly high. Due to solubility issue of salicylic acid in aqueous media, polymerization of salicylic acid resulted in very low yields. Free-horseradish peroxidase (HRP) enzyme is known to be losing its catalytic activity at 60 °C and above temperatures. However, the synthesized nanoflowers exhibited quite high catalytic activity even at 60 °C and above reaction temperatures. This provides notable benefits for reactions needed at high temperatures, and it is very important to use these kinds of nanobiocatalysts for both scientific studies and industrial applications. © 2024 Elsevier B.V., All rights reserved.

Description

Keywords

Enzymatic Polymerization, Organic-Inorganic Hybrid Nanobiocatalyst, Peroxidase, Phenol Derivatives, Viburnum Opulus L. Extract, Polimer Bilimi ve Teknolojileri, Enzymatic polymerization;peroxidase;Viburnum Opulus L. extract;phenol derivatives;organic-inorganic nano biocatalyst, Polymer Science and Technologies, Organic- inorganic hybrid nanobiocatalyst., Phenol derivatives, Viburnum Opulus L. extract, Enzymatic polymerization, Peroxidase

Fields of Science

01 natural sciences, 0104 chemical sciences

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N/A

Scopus Q

Q3
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OpenCitations Citation Count
3

Source

Journal of the Turkish Chemical Society, Section A: Chemistry

Volume

11

Issue

3

Start Page

1321

End Page

1328
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Scopus : 2

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2

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6

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3

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