Nanospheres caped Pt(II) and Pt (IV): synthesis and evaluation as antimicrobial and Antifungal Agent
Antimicrobial and antifungal polymers are gaining the attention of pharmaceutical makers and industrial design. Nanospheres-Polymers attached Platinum(II) / (IV) complexes have been synthesized to investigate antimicrobial activities. Firstly, nanospheres involving Schiff bases were synthesized from...
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Format: | Article |
Language: | English |
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Sciendo
2017-03-01
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Series: | Polish Journal of Chemical Technology |
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Online Access: | https://doi.org/10.1515/pjct-2017-0011 |
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author | Öğütçü Hatice Yetim Nurdan K. Özkan Elvan H. Eren Orçun Kaya Gamze Sarı Nurşen Dişli Ali |
author_facet | Öğütçü Hatice Yetim Nurdan K. Özkan Elvan H. Eren Orçun Kaya Gamze Sarı Nurşen Dişli Ali |
author_sort | Öğütçü Hatice |
collection | DOAJ |
description | Antimicrobial and antifungal polymers are gaining the attention of pharmaceutical makers and industrial design. Nanospheres-Polymers attached Platinum(II) / (IV) complexes have been synthesized to investigate antimicrobial activities. Firstly, nanospheres involving Schiff bases were synthesized from (aminomethyl) polystyrene and four substitute salicylaldehyde (2-hydroxy benzaldehyde, 5-fluoro-2-hydroxy benzaldehyde, 5-kloro-2-hydroxy benzaldehyde, 5-bromo-2-hydroxy benzaldehyde). Secondly, polymers attached Platinum(II) / (IV) complexes have been prepared by means of template method. The IR spectra show that the ligands act in a monovalent bidentate fashion all nanospheres involving Schiff bases. Square-planar and octahedral structures are proposed for Pt(II) and Pt(IV), respectively. All these substances have been examined for antibacterial activity against pathogenic strains, and antifungal activity. In particular, Pt(IV) complexes were more potent bactericides than all of the synthesized substances. |
first_indexed | 2024-12-18T01:00:44Z |
format | Article |
id | doaj.art-93551390729f4acaa6bf3c75891b9b42 |
institution | Directory Open Access Journal |
issn | 1899-4741 |
language | English |
last_indexed | 2024-12-18T01:00:44Z |
publishDate | 2017-03-01 |
publisher | Sciendo |
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series | Polish Journal of Chemical Technology |
spelling | doaj.art-93551390729f4acaa6bf3c75891b9b422022-12-21T21:26:23ZengSciendoPolish Journal of Chemical Technology1899-47412017-03-01191748010.1515/pjct-2017-0011pjct-2017-0011Nanospheres caped Pt(II) and Pt (IV): synthesis and evaluation as antimicrobial and Antifungal AgentÖğütçü Hatice0Yetim Nurdan K.1Özkan Elvan H.2Eren Orçun3Kaya Gamze4Sarı Nurşen5Dişli Ali6Ahi Evran University, Faculty of Arts and Science, Department of Biology, Kırşehir, TurkeyKırklareli University, Faculty of Arts and Science, Department of Chemistry, Kırklareli, TurkeyGazi University, Faculty of Science, Department of Chemistry, Ankara, 06500, TurkeyGazi University, Faculty of Science, Department of Chemistry, Ankara, 06500, TurkeyGazi University, Faculty of Science, Department of Chemistry, Ankara, 06500, TurkeyGazi University, Faculty of Science, Department of Chemistry, Ankara, 06500, TurkeyGazi University, Faculty of Science, Department of Chemistry, Ankara, 06500, TurkeyAntimicrobial and antifungal polymers are gaining the attention of pharmaceutical makers and industrial design. Nanospheres-Polymers attached Platinum(II) / (IV) complexes have been synthesized to investigate antimicrobial activities. Firstly, nanospheres involving Schiff bases were synthesized from (aminomethyl) polystyrene and four substitute salicylaldehyde (2-hydroxy benzaldehyde, 5-fluoro-2-hydroxy benzaldehyde, 5-kloro-2-hydroxy benzaldehyde, 5-bromo-2-hydroxy benzaldehyde). Secondly, polymers attached Platinum(II) / (IV) complexes have been prepared by means of template method. The IR spectra show that the ligands act in a monovalent bidentate fashion all nanospheres involving Schiff bases. Square-planar and octahedral structures are proposed for Pt(II) and Pt(IV), respectively. All these substances have been examined for antibacterial activity against pathogenic strains, and antifungal activity. In particular, Pt(IV) complexes were more potent bactericides than all of the synthesized substances.https://doi.org/10.1515/pjct-2017-0011antimicrobial agentantifungal agentpoly(styrene)caped platinium |
spellingShingle | Öğütçü Hatice Yetim Nurdan K. Özkan Elvan H. Eren Orçun Kaya Gamze Sarı Nurşen Dişli Ali Nanospheres caped Pt(II) and Pt (IV): synthesis and evaluation as antimicrobial and Antifungal Agent Polish Journal of Chemical Technology antimicrobial agent antifungal agent poly(styrene) caped platinium |
title | Nanospheres caped Pt(II) and Pt (IV): synthesis and evaluation as antimicrobial and Antifungal Agent |
title_full | Nanospheres caped Pt(II) and Pt (IV): synthesis and evaluation as antimicrobial and Antifungal Agent |
title_fullStr | Nanospheres caped Pt(II) and Pt (IV): synthesis and evaluation as antimicrobial and Antifungal Agent |
title_full_unstemmed | Nanospheres caped Pt(II) and Pt (IV): synthesis and evaluation as antimicrobial and Antifungal Agent |
title_short | Nanospheres caped Pt(II) and Pt (IV): synthesis and evaluation as antimicrobial and Antifungal Agent |
title_sort | nanospheres caped pt ii and pt iv synthesis and evaluation as antimicrobial and antifungal agent |
topic | antimicrobial agent antifungal agent poly(styrene) caped platinium |
url | https://doi.org/10.1515/pjct-2017-0011 |
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