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process optimization for green synthesis of iron nanoparticles by extract of fenugreek (trigonella foenum-graecum l.) seeds
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نویسنده
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ghafarzadegan reza ,yaghoobi mahdi ,momtaz saeideh ,ashoory nasim ,ghiaci yekta mona ,hajiaghaee reza
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منبع
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journal of medicinal plants - 2022 - دوره : 21 - شماره : 81 - صفحه:22 -32
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چکیده
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Background: the green synthesis of nanoparticles using plants presents important advantages over other biological systems. natural compounds present in plant extracts can reduce metal ions to nanoparticles in a singlestep green synthesis process. seeds of fenugreek with various compounds and antioxidant activity are suitable for green synthesis. objective: in this study, the performance of fenugreek seeds extract was evaluated for iron nanoparticles production. methods: the fenugreek (trigonella foenumgraecum l.) seeds were extracted with a distilled water solution at environmental temperature and this aqueous extract was used for the iron nanoparticles synthesis. response surface methodology was applied to optimize nanoparticle production by considering three independent variables: the extract to metal ion ratio (1.56.5), incubation time (3090 min), and temperature (3565 °c). results: mixing the fenugreek seeds extract and iron salt solution with a volume ratio of 1.5 at 36.5 °c for 90 min led to the optimization of iron nanoparticle production with the narrowest size distribution. at the optimized condition, the nanoparticle size was in the range of 2040 nm. conclusion: iron nanoparticles were successfully synthesized with fenugreek seed extract. physical parameters such as time, temperature, and mixing volume ratio of the extract to metal ions can control the average size of the synthesized green iron nanoparticles.
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کلیدواژه
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extract ,fenugreek ,green synthesis ,iron ,nanoparticles ,rsm
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آدرس
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acecr, medicinal plants research center, institute of medicinal plants, iran, shahid beheshti university, medicinal plants and drugs research institute, department of phytochemistry, iran, acecr, medicinal plants research center, institute of medicinal plants, iran, ministry of health and medical education (moh & me), food and drug research center, food and drug organization, iran, acecr, medicinal plants research center, institute of medicinal plants, iran, acecr, medicinal plants research center, institute of medicinal plants, iran
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پست الکترونیکی
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hajiaghaee@imp.ac.ir
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Process optimization for green synthesis of iron nanoparticles by extract of fenugreek (Trigonella foenum-graecum L.) seeds
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Authors
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Ghafarzadegan Reza ,Yaghoobi Mahdi ,Momtaz Saeideh ,Ashoory Nasim ,Ghiaci Yekta Mona ,Hajiaghaee Reza
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Abstract
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Background: The green synthesis of nanoparticles using plants presents important advantages over other biological systems. Natural compounds present in plant extracts can reduce metal ions to nanoparticles in a singlestep green synthesis process. Seeds of fenugreek with various compounds and antioxidant activity are suitable for green synthesis. Objective: In this study, the performance of fenugreek seeds extract was evaluated for iron nanoparticles production. Methods: The fenugreek (Trigonella foenumgraecum L.) seeds were extracted with a distilled water solution at environmental temperature and this aqueous extract was used for the iron nanoparticles synthesis. Response surface methodology was applied to optimize nanoparticle production by considering three independent variables: the extract to metal ion ratio (1.56.5), incubation time (3090 min), and temperature (3565 °C). Results: Mixing the fenugreek seeds extract and iron salt solution with a volume ratio of 1.5 at 36.5 °C for 90 min led to the optimization of iron nanoparticle production with the narrowest size distribution. At the optimized condition, the nanoparticle size was in the range of 2040 nm. Conclusion: Iron nanoparticles were successfully synthesized with fenugreek seed extract. Physical parameters such as time, temperature, and mixing volume ratio of the extract to metal ions can control the average size of the synthesized green iron nanoparticles.
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Keywords
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Extract ,Fenugreek ,Green synthesis ,Iron ,Nanoparticles ,RSM
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