Ghodsieh Bagherzade
University of Birjand
Alcohol oxidationNuclear chemistryNanoparticleFourier transform infrared spectroscopyCatalysisHeterogeneous catalysisOrganic chemistryInorganic chemistryAqueous solutionChemistryMaterials scienceCombinatorial chemistrySchiff baseAntibacterial activityPectinChemical engineeringExtraction (chemistry)NickelBacteriaCopperOxidative phosphorylationMagnetic nanoparticlesGreen chemistry
29Publications
8H-index
275Citations
Publications 26
Newest
#1Pouya Ghamari Kargar (University of Birjand)H-Index: 3
#2Ghodsieh Bagherzade (University of Birjand)H-Index: 8
Today, most synthetic methods are aimed at carrying out reactions under more efficient conditions and the realization of the twelve principles of green chemistry. Due to the importance and widespread applications of tetrazoles in various industries, especially in the field of pharmaceutical chemistry, and the expansion of the use of nanocatalysts in the preparation of valuable chemical reaction products, we decided to use an (Fe3O4@NFC@NSalophCu)CO2H nanocatalyst in this project. In this study, ...
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#1Pouya Ghamari Kargar (University of Birjand)H-Index: 3
#2Maryam Noorian (Birjand University of Medical Sciences)H-Index: 1
Last. Zahra Kiani (Birjand University of Medical Sciences)H-Index: 7
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A heterogeneous, magnetically recoverable nanocomposite, Fe3O4@NFC@ONSM-Ni(II) was prepared by immobilization of a novel Ni(II) Schiff base complex on Fe3O4@NFC nanoparticles followed by treatment with melamine. This trinuclear catalyst has been characterized using several analytical techniques including FT-IR, TEM, Fe-SEM, EDX, DLS, ICP, TGA, VSM, and XRD. It was used as an efficient catalyst for one-pot solvent-free synthesis of 1,4-dihydropyridine and poly-hydro quinoline derivatives through ...
1 CitationsSource
#1Navid Zivyar (University of Birjand)
#2Ghodsieh Bagherzade (University of Birjand)H-Index: 8
Last. Maryam Manzari Tavakoli (Shahid Beheshti University)H-Index: 1
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Purpose: To prevent chemical toxicity, biosynthesis of silver nanoparticles has been proposed as a cost-effective and environmentally friendly reducing agent option by corm extract of Crocus sativus var. Haussknechtii and as well as, evaluate their effects against Staphylococcus aureus and Escherichia coli. Research method: Silver nanoparticles were produced in the presence of secondary metabolites of this plant. The nanoparticles were then identified using the technique ultraviolet-visible spec...
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#1Hamid Beyzaei (Zabol University)H-Index: 11
#2Soheila Sargazi (University of Birjand)
Last. Elahe Yarmohammadi (Zabol University)H-Index: 2
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Development of synthetic procedures for the preparation of 1,3,4-oxadiazole derivatives has always been in the interest of researchers as a result of their widespread biological activities. In this study, an ultrasound-assisted procedure was proposed for the synthesis of 1,3,4-oxadiazol-2-amines form the reaction of hydrazides and cyanogen bromide. They were efficiently produced in 81–93% yields in the presence of ethanol and potassium bicarbonate as the reaction media and the base, respectively...
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#1Zahra Moodi (University of Birjand)
#2Ghodsieh Bagherzade (University of Birjand)H-Index: 8
Last. Janny L. Peters (Radboud University Nijmegen)H-Index: 22
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Quercetin (3,3′,4′,5,7-pentahydroxyflavone) is one of the dietary flavonoids, distributed in medicinal plants, vegetables, and fruits. Quercetin has the ability to bind with several metal ions to increase its biological activities. In the last two decades, quercetin has attracted considerable attention due to the biological and pharmaceutical activities such as antioxidant, antibacterial, and anticancer. In the present study, quercetin and ethanolamine were used for the synthesis Schiff base com...
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#1Pouya Ghamari Kargar (University of Birjand)H-Index: 3
#2Ghodsieh Bagherzade (University of Birjand)H-Index: 8
Last. Hossein Eshghi (FUM: Ferdowsi University of Mashhad)H-Index: 33
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In this work, the new trinuclear manganese catalyst defined as Fe3O4@NFC@NNSM-Mn(III) was successfully manufactured and fully characterized by different techniques, including FT-IR, XRD, TEM, SEM, EDX, VSM, and ICP analysis. There have been reports of the use of magnetic catalysts for the synthesis of xanthine derivatives. The critical potential interest in the present method include short reaction time, high yields, recyclability of the catalyst, easy workup, and the ability to sustain a variet...
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#1Soheila Sargazi Karbasaki (University of Birjand)
#2Ghodsieh Bagherzade (University of Birjand)H-Index: 8
Last. Milad Ghani (University of Mazandaran)H-Index: 14
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Abstarct In this research, we stated the fabrication of an innovative sulfamic acid functionalized magnetic nanoparticles (Fe3O4@PAMAM-SO3H) with denderimeric linkers. FT-IR, TEM, XRD, FE-SEM, and TGA methods were carried out to characterize the catalyst. Eventually, The catalytic prowess of the Fe3O4@PAMAM-SO3H was tested to synthesize highly substituted pyrans. The obtained magnetic sorbent was also used to remove malachite green (MG) and magnetic solid phase extraction of bisphenol A (BPA) as...
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#1Hossein Khashei Siuki (University of Birjand)H-Index: 1
#2Ghodsieh Bagherzade (University of Birjand)H-Index: 8
Last. Pouya Ghamari Kargar (University of Birjand)H-Index: 3
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2 CitationsSource
#1Pouya Ghamari Kargar (University of Birjand)H-Index: 3
#2Ghodsieh Bagherzade (University of Birjand)H-Index: 8
Last. Hossein Eshghi (FUM: Ferdowsi University of Mashhad)H-Index: 33
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Today, due to the developing need for inexpensive catalysts, recyclable magnetic nanocatalysts immobilized on polysaccharides possess many advantages over classical heterogeneous catalysts. However, cellulose has been an appealing material in catalysis science and technology. In this work, by controlling the interaction between the inorganic complexes and the support material, we designed a high activity nanostructured combination of a magnetic nanoparticle Fe3O4@NFC@Co(II) terminated complex as...
3 CitationsSource
#1Pouya Ghamari Kargar (University of Birjand)H-Index: 3
#2Sima Aryanejad (University of Birjand)H-Index: 5
Last. Ghodsieh Bagherzade (University of Birjand)H-Index: 8
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