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Synthesis,characterizations,electrochemical and molecular docking studies of Co_(x)Fe_(1-x)Fe_(2)O_(4)/Fe_(2)O_(3)nanoparticle
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作者 m.i.m.ismail Hassen Harzali +3 位作者 HaikelHrichi Hasan A.El-adawy Khaled A.Abdelshafeek Ahmed A.Elhenawy 《Chinese Physics B》 2025年第10期572-579,共8页
The advantageous magnetic,optical,and antibacterial properties of magnetic nanoparticles have recently drawn a lot of attention in the field of biomedicine.One of the most famous super paramagnetic materials,nanoferri... The advantageous magnetic,optical,and antibacterial properties of magnetic nanoparticles have recently drawn a lot of attention in the field of biomedicine.One of the most famous super paramagnetic materials,nanoferrite,is made up of two types of spinel structures:inverse and normal.Cobalt ferrite's inverse spinel structure offers several benefits,including excellent magnetostrictivity,good coupling efficiency,and inexpensive cost.This study's objective is to synthesize,characterize,and investigate the characteristics of the electrochemical properties of Co_(x)Fe_(1-x)Fe_(2)O_(4)/Fe_(2)O_(3)(x=0.30 and 0.77)nanoparticles using the chemical co-precipitation method.The physical properties of the produced nanoparticles were investigated using x-ray diffraction(XRD),transmission electron microscopy(TEM),and a vibrating sample magnetometer(VSM).The band gap properties of magneto-nano powders,including the direct and indirect band gap energies,and Urbach energy,are found.Scanning electron microscopy showed the presence of spherical nanoparticles ranging from 20.7 nm-23.7 nm.The analysis of Co_(x)Fe_(1-x)Fe_(2)O_(4)/Fe_(2)O_(3)(x=0.30 and 0.77)nanoparticles,for instance,reveals differences in their surface characteristics that are significant for their potential applications.Parameters like dnorm,de,and di,along with shape index and curvedness,contribute to a comprehensive understanding of the molecular surface,which is crucial for the design of new materials with desired physical and chemical properties.Molecular docking studies have revealed promising interactions between certain crystals and DNA gyrase,mirroring the binding mode of known inhibitors.This suggests potential for these crystals to serve as antimicrobial agents in future research.Such findings are crucial as they contribute to the development of new treatments against antibiotic-resistant bacteria,a growing global health concern. 展开更多
关键词 magnetic nanoparticles cobalt ferrite energy gap electrochemical assessments molecular docking
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