• فهرست مقالات Magnetic properties

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        1 - Magnetic susceptibility and Magnetocaloric effect of Frost-Musulin potential subjected to Magnetic and Aharonov-Bohm (Flux) fields for CO and NO diatomic molecules
        Eddy William Stanley Onye Akpan Ikot Arthur Nwachukwu Etido Inyang Ituen Okon Ita Akpan Benedict Ita
        In this paper, we perform a nonrelativistic study of Frost-Musulin potential (FMP) impacted by the external magnetic and AB flux fields for the CO and NO diatomic molecules using the Nikiforov-Uvarov method with the Greene-Aldrich approximation to the centrifugal barrie چکیده کامل
        In this paper, we perform a nonrelativistic study of Frost-Musulin potential (FMP) impacted by the external magnetic and AB flux fields for the CO and NO diatomic molecules using the Nikiforov-Uvarov method with the Greene-Aldrich approximation to the centrifugal barrier. The numerical computation of the proposed potential reveals that the combined impact of the magnetic and AB flux fields completely removes the degeneracy of the energy spectra and controls the behavior of the magnetocaloric effect (MCE) by acting as a regulating factor to cool or heat the MCE. Also, the thermomagnetic plots obtained for the analyzed dimer molecules agreed perfectly with previous work. This research has the potential to be applied in molecular physics and MCE studies for a variety of molecules. پرونده مقاله
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        2 - First principle investigations on structural, mechanical, spin polarized electronic and magnetic properties of TmZn and TmCd
        Satish Chand R. P. Singh A. Govindan
        AbstractStructural, mechanical, spin polarized electronic and magnetic properties of TmZn and TmCd intermetallic compounds have been studied using the full-potential linearize augmented plane-wave plus local orbital method. The structural and mechanical properties have چکیده کامل
        AbstractStructural, mechanical, spin polarized electronic and magnetic properties of TmZn and TmCd intermetallic compounds have been studied using the full-potential linearize augmented plane-wave plus local orbital method. The structural and mechanical properties have been studied in terms of lattice parameter (a0), bulk modulus (B0) and its first-order pressure derivative (B0′documentclass[12pt]{minimal} usepackage{amsmath} usepackage{wasysym} usepackage{amsfonts} usepackage{amssymb} usepackage{amsbsy} usepackage{mathrsfs} usepackage{upgreek} setlength{oddsidemargin}{-69pt} egin{document}$$B_{0}^{prime }$$end{document}), elastic constants (Cij), Young’s modulus (Y), shear modulus (G) and Poisson’s ratio (υdocumentclass[12pt]{minimal} usepackage{amsmath} usepackage{wasysym} usepackage{amsfonts} usepackage{amssymb} usepackage{amsbsy} usepackage{mathrsfs} usepackage{upgreek} setlength{oddsidemargin}{-69pt} egin{document}$$upsilon$$end{document}) in equilibrium state which are found to be consistent with available experimental/theoretical values. Spin polarized electronic properties have been investigated in terms of band structure and density of state histograms for spin up and spin down channel. Electronic behavior of TmZn and TmCd shows that studied materials are metallic ferromagnets with high spin polarization in which Tm-f state electrons have dominant character. پرونده مقاله
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        3 - Magnetic Properties of Cobalt Ferrite synthesized by Hydrothermal and Co-precipitation Methods: A Comparative Study
        Saeed Abedini Khorrami Qazale Sadr Manuchehri
        The magnetic properties of calcined cobalt ferrite formed by nano-crystalline powders have been compared by two different methods (co-precipitation and hydrothermal). The structural properties of the produced powders were investigated by X-ray Diffraction (XRD), scannin چکیده کامل
        The magnetic properties of calcined cobalt ferrite formed by nano-crystalline powders have been compared by two different methods (co-precipitation and hydrothermal). The structural properties of the produced powders were investigated by X-ray Diffraction (XRD), scanning electron microscopy (SEM). The results show that the formation of cobalt ferrite spinel structures is effected by changing methods. Both techniques were effective and led to the production of spinel phase and crystalline nano-powders. Magnetic hysteresis was measured by using a vibrating sample magnetometer (VSM) in a maximum field of 10 kOe. The saturation magnetization (Ms), remanence (Mr) and coercivity (Hc) were derived from the hysteresis loops. The results revealed that the magnetic properties of nano-particles depend on the structure, composition and size of particle. پرونده مقاله
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        4 - Preparation, Structural and Magnetic Behavior of Sr(AlCr)xFe(12-2x) O19 Hexagonal Ferrites
        Mahboobeh Alimoradi Mohammad Yousefi Babak Sadeghi Mostafa M.Amini Alireza Abbasi
        In this investigation, strontium hexaferrite nanocomposites co-doped with aluminum and chromium were prepared Sr(AlCr)xFe(12-2x)O19 with x different amounts (x= 0, 0.2, 0.4, 0.6 and 0.8), were synthesized. The magnetic nanocomposites have been prepared by simple sol-gel چکیده کامل
        In this investigation, strontium hexaferrite nanocomposites co-doped with aluminum and chromium were prepared Sr(AlCr)xFe(12-2x)O19 with x different amounts (x= 0, 0.2, 0.4, 0.6 and 0.8), were synthesized. The magnetic nanocomposites have been prepared by simple sol-gel auto-combustion method. The morphology and structure of nano-samples were determined by FTIR, XRD and FESEM . The results of the XRD pattern confirmed P63/mmc space group and the single phase of the synthesized samples. The crystal size of the prepared samples decreases with increasing Al and Cr.The magnetic properties of these compounds are determined by the VSM. Magnetic properties (Mr, Ms and Hc) were measured. The result showed that Mr and Ms decrease with the increase of Al and Cr. پرونده مقاله
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        5 - Synthesis, characterization and Microwave Absorption Properties of Novel Hard-soft Ferrite and Polyaniline-loaded Nanocomposite
        Tolou Pourashraf Mohammad Yousefi Saeid Shokri َAbbas Ahmadi Parviz Aberoomand Azar
        Nanocomposites of hard-soft ferrites (SrFe12O19) (1-x)/(Ni0.4Mn0.2Zn0.4Fe2O4) x with x = 0.2, 0.4, 0.6,and 0.8 are synthesized by the auto-combustion sol-gel method. In-situ polymerization is used to create polyaniline and hard-soft ferrite nanocomposites. X-ray powder چکیده کامل
        Nanocomposites of hard-soft ferrites (SrFe12O19) (1-x)/(Ni0.4Mn0.2Zn0.4Fe2O4) x with x = 0.2, 0.4, 0.6,and 0.8 are synthesized by the auto-combustion sol-gel method. In-situ polymerization is used to create polyaniline and hard-soft ferrite nanocomposites. X-ray powder diffractometers (XRD), field emission scanning electron microscopes (FESEM), Fourier transform infrared spectra (FTIR),vibrating sample magnetometers (VSM), and vector network analyzers (VNA) have all been used to evaluate the structure, morphology, magnetic properties, and microwave absorption ofnanocomposites. FT-IR spectra are used to confirm and validate the existence of both tetrahedral and octahedral complexes, as well as the interactions between polymer chains and hard and soft nanoparticles, which show that ferrite nanocomposites are coated with polymers. In hard-soft and polymeric nanocomposites, XRD analysis reveals the presence of pure hard and soft phase characteristics as well as PANI characteristics. SEM images show that the particles agglomerate in hard-soft composites as the soft phase rises as a result of being magnetic, and images for polymericcomposites show cohesive PANI particles that surround the hard-soft ferrite particle's surface.These findings demonstrate that PANI and hard-soft ferrites can be properly connected. VSM analysis revealed that by adding polymers, the magnetic properties of hard-soft composites dropped significantly due to the nonmagnetic effects of PANI. The VNA test shows that PANI/(SrFe12O19)0.4/(Ni0.4Mn0.2Zn0.4Fe2O4)0.6 exhibits optimized reflection loss from -1.84 to -16.53 in the X-Band (8-12.5 GHz frequency range) when compared to (SrFe12O19)0.4/ (Ni0.4Mn0.2Zn0.4Fe2O4) 0.6 with a matching thickness of 3 mm. پرونده مقاله
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        6 - Production and Characterization of Nano Crystalline Fe85Si10Ni5 Soft Magnetic Alloys by Mechanical Alloying
        Arash Dezhsetan Ali Saidi Reza Ebrahimi-Kahrizsangi
        Abstract There are various methods to produce iron based nano crystalline magnetic alloys. Among these methods, mechanical alloying is one of the most important. In this research, nano crystalline Fe85Si10Ni5 soft magnetic alloy was synthesized by mechanical alloying. چکیده کامل
        Abstract There are various methods to produce iron based nano crystalline magnetic alloys. Among these methods, mechanical alloying is one of the most important. In this research, nano crystalline Fe85Si10Ni5 soft magnetic alloy was synthesized by mechanical alloying. The effect of alloying time on phase constituents and magnetic properties of the produced powders was investigated, by X-ray diffraction (XRD) and alternating gradient force magnetometer (AGFM). The XRD results showed that alloy formation started after 2 hours of milling. Further milling resulted in the reduction of the grain size and lattice parameter. After 60 hours of milling, the grain size was reduced to 8 nm. AGFM results showed that magnetic saturation and coercivity depends on the alloying time. Increasing the alloying time, causes the increase of magnetic saturation and decrease of coercivity. Abstract There are various methods to produce iron based nano crystalline magnetic alloys. Among these methods, mechanical alloying is one of the most important. In this research, nano crystalline Fe85Si10Ni5 soft magnetic alloy was synthesized by mechanical alloying. The effect of alloying time on phase constituents and magnetic properties of the produced powders was investigated, by X-ray diffraction (XRD) and alternating gradient force magnetometer (AGFM). The XRD results showed that alloy formation started after 2 hours of milling. Further milling resulted in the reduction of the grain size and lattice parameter. After 60 hours of milling, the grain size was reduced to 8 nm. AGFM results showed that magnetic saturation and coercivity depends on the alloying time. پرونده مقاله
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        7 - Effect of Heat Treatment on Structural and Magnetic Properties of Nanocrystalline SrFe12O19 Hexaferrite synthesized by Co-Precipitation Method
        Mansoureh Ganjali Monireh Ganjali Arvin Eskandari Masoud Aminzare
        Nanocrystalline strontium hexaferrite (SrFe12O19) powders have been successfully synthesized using the facile Co-precipitation method. The ferrite precursors were achieved from mixtures of strontium and ferric chloride in an aqueous medium without any surfactant and sof چکیده کامل
        Nanocrystalline strontium hexaferrite (SrFe12O19) powders have been successfully synthesized using the facile Co-precipitation method. The ferrite precursors were achieved from mixtures of strontium and ferric chloride in an aqueous medium without any surfactant and soft template. The as-received powders were calcined at 800 and 1000 ˚C for 2 hours in air. The final powders were characterized by X-ray diffraction (XRD), scanning electron microscopy (SEM), transmission electron microscopy (TEM), BET surface area analysis and Vibrating Sample Magnetometer (VSM). The effects of the calcination temperature on the phase composition, particle size and shape as well as the magnetic properties of the products have been investigated. The results indicated that the higher calcination temperature (1000 oC) resulted in higher particle sizes (98.1 nm), maximum saturation magnetization (60.53 emu/g), remanence value (36.23 emu/g) and less surface area (12 m2g-1). The magnetocrystalline anisotropy constant, K, calculated from the Stoner–Wohlfarth theory are increased by increasing temperature up to 15.1 (HA2/kg). پرونده مقاله
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        8 - Polyethylene Glycol Coated NiFe2O4 Nanoparticles Produced by Solution Plasma Method for Biomedical Applications
        Masoud Shabani Ehsan Saebnoori Ali Hassanzadeh-Tabrizi Hamid Reza Bakhsheshi-Rad
        The structural and magnetic properties of the polyethylene glycol (PEG) coated nickel spinel ferrite (NiFe2O4) nanoparticles have been reported in the present study. NiFe2O4 nanoparticles were prepared by solution plasma method using KOH + Na2Co3 as electrolyte. The pre چکیده کامل
        The structural and magnetic properties of the polyethylene glycol (PEG) coated nickel spinel ferrite (NiFe2O4) nanoparticles have been reported in the present study. NiFe2O4 nanoparticles were prepared by solution plasma method using KOH + Na2Co3 as electrolyte. The prepared powder of nickel ferrite nanoparticles was annealed at 800 ˚C for two h and used for further study. The X-ray analysis confirmed the formation of a cubic spinel single-phase structure. The crystallite size, lattice parameter, and X-ray density of the PEG-coated NiFe2O4 nanoparticles were calculated using XRD data. TEM and FTIR studies revealed the presence of PEG on nickel ferrite nanoparticles and reduced agglomeration in the NiFe2O4 nanoparticles. The pulse-field hysteresis loop tracer technique studied the magnetic properties at room temperature. The magnetic parameters such as saturation magnetization, remanence magnetization, and coercivity have been obtained. These magnetic parameters were get decreased by PEG coating. پرونده مقاله
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        9 - The effect of Mn doping on structural, magnetic and optical properties of TiO2 nanoparticles
        alireza razeghizadeh elham elahi vahdat rafee
        The aim of this paper is to study the effect of Mn concentration on the structural, magnetic and optical properties of TiO2 nanoparticles. TiO2 nano powders with Mn concentration of 0%, 0.2%, 1% and 5% were synthesized by the sol-gel method. The structural, surface morp چکیده کامل
        The aim of this paper is to study the effect of Mn concentration on the structural, magnetic and optical properties of TiO2 nanoparticles. TiO2 nano powders with Mn concentration of 0%, 0.2%, 1% and 5% were synthesized by the sol-gel method. The structural, surface morphology and average crystal grain size, optical, magnetic properties and chemical compounds of the samples are studied using XRD, FE-SEM, Uv-Vis, VSM and EDX analysis respectively. The results indicate that the samples are crystallized at anatase phase. Also, the average size of the nanoparticles is decreased by increasing Mn doping percent. The study of the optical properties shows that the absorption maximum dislocates toward higher wavelengths by adding Mn to the sample. This shift may be ascribed to the enhanced trapped electron absorption caused by the Mn-doped ions. The optical energy band gap of the doping samples shows significant reduction rather the pure state. The samples show significant paramagnetic behavior when the Mn concentration is 5%. پرونده مقاله
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        10 - The effect of Mn doping on structural, magnetic and optical properties of TiO2 nanoparticles
        Alireza Razeghizadeh Elham Elahi Vahdat Rafee
        The aim of this paper is to study the effect of Mn concentration on the structural, magneticand optical properties of TiO2 nanoparticles. TiO2 nanopowders with Mn concentration of 0%,0.2%, 1% and 5% were synthesized by the sol-gel method. The structural, surface morphol چکیده کامل
        The aim of this paper is to study the effect of Mn concentration on the structural, magneticand optical properties of TiO2 nanoparticles. TiO2 nanopowders with Mn concentration of 0%,0.2%, 1% and 5% were synthesized by the sol-gel method. The structural, surface morphologyand average crystal grain size, optical, magnetic properties and chemical compounds of thesamples are studied using XRD, FE-SEM, Uv-Vis, VSM and EDX analysis respectively. The resultsindicate that the samples are crystallized at anatase phase. Also, the average size of thenanoparticles is decreased by increasing Mn doping percent. The study of the optical propertiesshows that the absorption maximum dislocates toward higher wavelengths by adding Mnto the sample. This shift may be ascribed to the enhanced trapped electron absorption causedby the Mn-doped ions. The optical energy band gap of the doping samples shows significantreduction rather the pure state. The samples show significant paramagnetic behavior whenthe Mn concentration is 5%. پرونده مقاله
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        11 - The Effect of Alkaline Media and Temperature on ‎the Structure and Magnetic Properties of Magnetic ‎Nanoparticles Modified with PEG
        Abolfazl Khodadadi Yaghoob Mohammadmoradi Mohammad Rahim Talebtash
        Magnetic nanoparticles were synthesized and coated by the situ-coprecipitation method with FeCl3.6H2O and FeCl2.4H2O precursors in the presence of NH4OH (or NaOH) reduction and PEG coated agent. Preparation of modified magnetic nanoparticles were performed at two differ چکیده کامل
        Magnetic nanoparticles were synthesized and coated by the situ-coprecipitation method with FeCl3.6H2O and FeCl2.4H2O precursors in the presence of NH4OH (or NaOH) reduction and PEG coated agent. Preparation of modified magnetic nanoparticles were performed at two different temperatures under the influence of different alkaline media. The effect of strength of alkaline media and reaction temperature of the magnetic properties (Magnetic saturation, Magnetic remanent, coercive force (of modified MNPs were investigated. To study structure, morphology, optic and magnetic properties MNPs were characterized by XRD, FTIR, TEM and VSM analyzes.The results showed that modified magnetic nanoparticles have superparamagnetic properties and have high magnetic saturation and small coercive force, so the magnetic properties of the modified MNPs are depended to the strength of the alkaline remanent directly. The saturation magnetization of the synthesized sample in NH4OH and NaOH at 80° C was determined as 60.94 and 49.39 emu/g, respectively. Also increasing temperature, improves magnetic properties coated MNPs) at temperatures below the blocking temperature. (The results of the XRD analysis showed that the structure of the modified magnetic nanoparticles is inverted spinel and the size of the nanoparticles synthesized in the ammonia media is smaller than the other media. The results of FTIR optical analysis revealed that the peaks at ~570 and ~440 cm^(-1) indicates the bond Fe-O. TEM analysis indicated that the shape of the MNPs is pseudo-spherical. VSM analysis indicated that the magnetic nanoparticles synthesized in stronger alkaline media (ammonia) and high temperature showed better magnetic behavior by higher magnetic properties. پرونده مقاله
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        12 - سنتز و مشخصه‌یابی نانومیله های Fe2O3/BaFe12O19 و بررسی خواص مغناطیسی آنها
        محمد جزیره پور هرمزی محمد حسین شمس
        در این مقاله نانومیله‌های Fe2O3/BaFe12O19 با استفاده از یک فرآیند هیدروترمال ساده و ارزان با قابلیت تولید انبوه سنتز شده است. ویژگی‌های مورفولوژیک نانومیله‌ها نظیر طول، قطر و نسبت ابعادی در این فرآیند قابل‌کنترل است. EDTA در این فرآیند به‌عنوان عامل کنترل‌کننده رشد ‌است چکیده کامل
        در این مقاله نانومیله‌های Fe2O3/BaFe12O19 با استفاده از یک فرآیند هیدروترمال ساده و ارزان با قابلیت تولید انبوه سنتز شده است. ویژگی‌های مورفولوژیک نانومیله‌ها نظیر طول، قطر و نسبت ابعادی در این فرآیند قابل‌کنترل است. EDTA در این فرآیند به‌عنوان عامل کنترل‌کننده رشد ‌استفاده‌ شده است. در این پژوهش تأثیر عوامل مختلفی نظیر دمای فرآوری هیدروترمال (115، 150 و 180 درجه سانتیگراد)، زمان فرآوری هیدروترمال (5، 10 و 40 ساعت)، نوع عامل کنترل‌کننده رشد (EDTA، PEG400، PEG6000، CA) و نوع عامل قلیایی (NaOH و NH3) بررسی گردید. در شرایط مختلف اشکال گوناگون نظیر کره‌هایی با ابعاد 50 تا 100 نانومتر، نانومیله‌هایی با قطرهای 50 تا 400 نانومتر و طول‌های 1 تا 10 میکرون سنتز شد. مشخصات مورفولوژی نمونه‌ها توسط میکروسکوپ الکترونی روبشی (SEM)و خواص مغناطیسی نمونه‌ها با استفاده از مغناطش سنج با گرادیان نیروی متناوب (AGFM) مورد مطالعه قرار گرفت. نانومیله‌های مورد بررسی در این تحقیق در موضوعاتی نظیر حذف یون‌های فلزات سنگین از پساب‌ها، کاتالیست‌ها، سلول‌های خورشیدی و مواد جاذب امواج مایکروویو قابل کاربرد هستند. پرونده مقاله
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        13 - ساخت و بررسی خواص ساختاری و جذب امواج الکترومغناطیسی در کامپوزیت های باریم استرانسیوم تیتانات/فریت کبالت-روی
        احمد پوربافرانی
        در این تحقیق کامپوزیت‌های باریم استرانسیوم تیتانات / فریت کبالت-روی که از دو فاز مغناطیسی متفاوت تشکیل شده، مورد بررسی قرار داده شده است. فاز پیروالکتریک شامل ذرات باریم استرانسیوم تیتانات با اندازه‌ی ذرات در حدود 150 نانومتر و فاز مغناطیسی نرم شامل نانوذرات فریت کبالت& چکیده کامل
        در این تحقیق کامپوزیت‌های باریم استرانسیوم تیتانات / فریت کبالت-روی که از دو فاز مغناطیسی متفاوت تشکیل شده، مورد بررسی قرار داده شده است. فاز پیروالکتریک شامل ذرات باریم استرانسیوم تیتانات با اندازه‌ی ذرات در حدود 150 نانومتر و فاز مغناطیسی نرم شامل نانوذرات فریت کبالت–روی با اندازه‌ی ذرات در حدود 30 نانومتر است. هر دو فاز به کمک روش سل- ژل و هر یک با استوکیومتری به-خصوصی تهیه شده‌اند. آنالیزهای پراش پرتو X تشکیل فاز خالصی را برای هر یک از فازهای مغناطیسی نشان داد و آنالیز FESEM بیانگر خواص ساختاری نانوذرات فریت کبالت-روی و باریم استرانسیوم تیتانات در ساختار است. بررسی گذردهی الکتریکی، تراوایی مغناطیسی و اتلاف بازتابی نمونه‌ها در محدوده فرکانسی GHz 18-1 چگونگی پاسخ امواج الکترومغناطیسی به این نمونه‌ها را در این محدوده‌ی فرکانسی نشان داد. بر طبق اتلاف بازتابی مربوط به کامپوزیت‌ها، دو مکانیزم برای جذب امواج الکترومغناطیسی وجود دارد. در ناحیه ابتدایی این محدوده‌ی فرکانسی، اتلاف مغناطیسی ناشی از وجود نانوذرات فریت کبالت-روی غالب بوده و در ناحیه انتهایی این محدوده، اتلاف دی-الکتریکی ناشی از وجود ذرات باریم استرانسیوم تیتانات غالب است. پرونده مقاله
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        14 - مطالعه تغییرات فازی، ساختاری و جذب امواج مایکروویو پودر مغناطیسی با ترکیب BaZn0.6Zr0.3X0.3Fe10.8O19 (X=Ti,Ce,Sn)
        محسن صالحی صاحبعلی منافی سید سلمان سید افقهی مجتبی جعفریان
        در این پژوهش نمونه‌های هگزافریت باریم با ترکیب BaZn0.6Zr0.3X0.3Fe10.8O19 (X=Ti,Ce,Sn) به روش فعال‌سازی مکانیکی سنتز و بوسیله بوسیله آنالیزهای پراش اشعه ایکس (XRD)، میکروسکوپ الکترونی روبشی گسیل میدانی (FE-SEM)، مغناطیس‌سنج نمونه مرتعش (VSM) و تجزیه و تحلیل شبکه بردار (V چکیده کامل
        در این پژوهش نمونه‌های هگزافریت باریم با ترکیب BaZn0.6Zr0.3X0.3Fe10.8O19 (X=Ti,Ce,Sn) به روش فعال‌سازی مکانیکی سنتز و بوسیله بوسیله آنالیزهای پراش اشعه ایکس (XRD)، میکروسکوپ الکترونی روبشی گسیل میدانی (FE-SEM)، مغناطیس‌سنج نمونه مرتعش (VSM) و تجزیه و تحلیل شبکه بردار (VNA) مورد ارزیابی قرار گرفتند. نتایج آنالیز پراش اشعه ایکس تایید کننده حضور فاز غالب هگزافریت باریم به همراه مقدار ناچیزی فاز غیرمغناطیسی هماتیت در ترکیب نمونه‌ها بود. پارامترهای شبکه a و c با توجه به اختلاف شعاع‌های یونی یون‌های مهمان و میزبان افزایش پیدا کرد که بیشترین میزان افزایش مربوط به نمونه حاوی یون سریوم بود. نتایج FE-SEM تایید کننده میانگین اندازه ذرات در حدود nm 450 و nm 250 به ترتیب برای نمونه دوپ نشده و دوپ شده بودند. طبق منحنی‌های M-H مقادیر مغناطش اشباع (Ms) و نیروی وادارندگی (Hc) در تمامی نمونه‌ها کاهش یافت و تغییرات قابل توجهی در خواص مغناطیسی هگزافریت باریم در اثر جانشینی یون های آهن مشاهده شد. طبق نتایج بیشترین میزان مغناطش اشباع (emu/g 1/33 ) و کمترین نیروی پسماندزدا (Oe 14/18) مربوط به نمونه با ترکیب BaZn0.6Zr0.3Ti0.3Fe10.8O19 و BaZn0.6Zr0.3Sn0.3Fe10.8O19 بود. نتایج جذب امواج مایکروویو در محدوده فرکانسی GHz 4/12-8 نشان دهنده بیشترین میزان جذب مربوط به نمونه با ترکیب BaZn0.6Zr0.3Sn0.3Fe10.8O19 در فرکانس GHz 1/11 به میزان dB 3/16- بود. پرونده مقاله