Antibacterial Activity of Copper Nanoparticles Fabricate via Malva Sylvesteris Leaf Extract

A Green reduction of copper ions Cu2+ has been achieved by one-step process and at room temperature utilizing Malva sylvesteris. The extract of Malva Sylvesteris leaf has been identified using qualitative tests to detect the bioactive compounds such as flavonoids, polyphenols, terpenoids and carbohy...

Full description

Bibliographic Details
Main Authors: Osama Ismail Haji Zebari, Samie Yaseen Sharaf Zeebaree, Aemn Yaseen Sharaf Zeebaree, Hardan Ismail Haji Zebari, Hadeel Ridha Abbas
Format: Article
Language:English
Published: Sulaimani Polytechnic University 2019-08-01
Series:Kurdistan Journal of Applied Research
Subjects:
Online Access:https://kjar.spu.edu.iq/index.php/kjar/article/view/334
_version_ 1797197671451066368
author Osama Ismail Haji Zebari
Samie Yaseen Sharaf Zeebaree
Aemn Yaseen Sharaf Zeebaree
Hardan Ismail Haji Zebari
Hadeel Ridha Abbas
author_facet Osama Ismail Haji Zebari
Samie Yaseen Sharaf Zeebaree
Aemn Yaseen Sharaf Zeebaree
Hardan Ismail Haji Zebari
Hadeel Ridha Abbas
author_sort Osama Ismail Haji Zebari
collection DOAJ
description A Green reduction of copper ions Cu2+ has been achieved by one-step process and at room temperature utilizing Malva sylvesteris. The extract of Malva Sylvesteris leaf has been identified using qualitative tests to detect the bioactive compounds such as flavonoids, polyphenols, terpenoids and carbohydrates. Characterization of copper nanoparticles was diagnosed by Ultraviolet–visible spectroscopy that confirms the band characteristic for copper nanoparticles in the range of 200–700 nm and the role of Malva Selvesteris leaf extract biomolecules was confirmed by Fourier transform infrared spectroscopy. The crystal shape of nanoparticles was confirmed by X-ray diffraction (XRD) at average (20.96 nm) and the peaks correspond to the face centered cubic structure of cooper metal. Effective antiseptic activity of copper nanoparticles determined by measurement of inhibition zone showed against representative microorganism of bacteria (Gram-positive: Clostridium Staph.aureus;) and (Gram-negative: Escherichia col; Pseudomonas; Klebsiella
first_indexed 2024-03-07T14:10:43Z
format Article
id doaj.art-64dcc829e5594ceea2c770ccc4fb5a51
institution Directory Open Access Journal
issn 2411-7684
2411-7706
language English
last_indexed 2024-04-24T06:47:40Z
publishDate 2019-08-01
publisher Sulaimani Polytechnic University
record_format Article
series Kurdistan Journal of Applied Research
spelling doaj.art-64dcc829e5594ceea2c770ccc4fb5a512024-04-22T17:19:26ZengSulaimani Polytechnic UniversityKurdistan Journal of Applied Research2411-76842411-77062019-08-0110.24017/science.2019.ICHMS.15334Antibacterial Activity of Copper Nanoparticles Fabricate via Malva Sylvesteris Leaf ExtractOsama Ismail Haji Zebari0Samie Yaseen Sharaf Zeebaree1Aemn Yaseen Sharaf Zeebaree2Hardan Ismail Haji Zebari3Hadeel Ridha Abbas4Akre Directorate Education, Duhok General Directorate, Ministry of Education, Duhok, IraqDept. of Medical lab. Technology, Shekhan Technical College of Health, Duhok Polytechnic University, Duhok, IraqDept. of Medical lab. Technology, Shekhan Technical College of Health, Duhok Polytechnic University, Duhok, IraqAkre Directorate Education, Duhok General Directorate, Ministry of Education, Duhok, IraqMaternity & Obstetric Department, Sulaimani Technical Institute, Sulaimani Polytechnic University, Sulaimani, Kurdistan Region, IraqA Green reduction of copper ions Cu2+ has been achieved by one-step process and at room temperature utilizing Malva sylvesteris. The extract of Malva Sylvesteris leaf has been identified using qualitative tests to detect the bioactive compounds such as flavonoids, polyphenols, terpenoids and carbohydrates. Characterization of copper nanoparticles was diagnosed by Ultraviolet–visible spectroscopy that confirms the band characteristic for copper nanoparticles in the range of 200–700 nm and the role of Malva Selvesteris leaf extract biomolecules was confirmed by Fourier transform infrared spectroscopy. The crystal shape of nanoparticles was confirmed by X-ray diffraction (XRD) at average (20.96 nm) and the peaks correspond to the face centered cubic structure of cooper metal. Effective antiseptic activity of copper nanoparticles determined by measurement of inhibition zone showed against representative microorganism of bacteria (Gram-positive: Clostridium Staph.aureus;) and (Gram-negative: Escherichia col; Pseudomonas; Klebsiella https://kjar.spu.edu.iq/index.php/kjar/article/view/334Fabrication, Nanoparticles, Malva sylvesteris , Microbial susceptibility
spellingShingle Osama Ismail Haji Zebari
Samie Yaseen Sharaf Zeebaree
Aemn Yaseen Sharaf Zeebaree
Hardan Ismail Haji Zebari
Hadeel Ridha Abbas
Antibacterial Activity of Copper Nanoparticles Fabricate via Malva Sylvesteris Leaf Extract
Kurdistan Journal of Applied Research
Fabrication, Nanoparticles, Malva sylvesteris , Microbial susceptibility
title Antibacterial Activity of Copper Nanoparticles Fabricate via Malva Sylvesteris Leaf Extract
title_full Antibacterial Activity of Copper Nanoparticles Fabricate via Malva Sylvesteris Leaf Extract
title_fullStr Antibacterial Activity of Copper Nanoparticles Fabricate via Malva Sylvesteris Leaf Extract
title_full_unstemmed Antibacterial Activity of Copper Nanoparticles Fabricate via Malva Sylvesteris Leaf Extract
title_short Antibacterial Activity of Copper Nanoparticles Fabricate via Malva Sylvesteris Leaf Extract
title_sort antibacterial activity of copper nanoparticles fabricate via malva sylvesteris leaf extract
topic Fabrication, Nanoparticles, Malva sylvesteris , Microbial susceptibility
url https://kjar.spu.edu.iq/index.php/kjar/article/view/334
work_keys_str_mv AT osamaismailhajizebari antibacterialactivityofcoppernanoparticlesfabricateviamalvasylvesterisleafextract
AT samieyaseensharafzeebaree antibacterialactivityofcoppernanoparticlesfabricateviamalvasylvesterisleafextract
AT aemnyaseensharafzeebaree antibacterialactivityofcoppernanoparticlesfabricateviamalvasylvesterisleafextract
AT hardanismailhajizebari antibacterialactivityofcoppernanoparticlesfabricateviamalvasylvesterisleafextract
AT hadeelridhaabbas antibacterialactivityofcoppernanoparticlesfabricateviamalvasylvesterisleafextract