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Effect of Polyethylene Glycol(PEG-4000)on Dielectric Properties of Mn_(0.5)Zn_(0.5)Fe2O4 Nanoparticles

机译:聚乙二醇(PEG-4000)对Mn_(0.5)Zn_(0.5)Fe2O4纳米颗粒的介电性能的影响

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Dielectric properties of Mn_(0.5)Zn_(0.5)Fe2O4 nanoparticles(NPs)encapsulated by polyethylene glycol(PEG)has been studied as a function of frequency in the range 5 kHz to 120 kHz at room temperature.PEG-cncapsulated Mn_(0.5)Zn_(0.5)Fe2O4 NPs were synthesized by co-precipitation method with various PEG concentration.X-ray diffraction(XRD)pattern confirmed that Mn_(0.5)Zn_(0.5)Fe2O4 NPs have cubic spinel structure.The crystallite size of the sample was 12.5 nm and then decreased with the increase of PEG concentration.It is due to the agglomeration reduced after PEG encapsulation.The real dielectric constant(ε’)of the sample was 320.2 and decreased with the increase of PEG concentration,it is expected because of a decrease of crystallite size.The imaginary dielectric constant(ε’)and loss tangent(tan 8)of the samples have a value 360.2 and 1.1 respectively and decreased with the increase of PEG concentration,which is due to the decrease in drift mobility of electric charge carries.The AC conductivity(σ)of the sample was(1.1 × 10~(-4))kΩ~(-1)and decreased with the increase of PEG concentration,this may be due to the change in cation distribution of the sample.The capacitance of the sample was(4.5 × 10~(-11))Farad and decreased with the increase of PEG concentration,it is also caused by the decrease of crystallite size.Furthermore,the real dielectric constant(ε’)and imaginary dielectric constant(ε’)of the samples have a value 521.1 and 393.8 respectively and decreased with increasing applied frequency; it is due to the fact that above certain frequencies the electronic exchange between the ferrous and ferric ions does not follow the applied field.The AC conductivity of the sample was(2.1 × 10~(-4))kΩ~(-1)and increased with increasing applied frequency,contrary the capacitance(C)of the sample was(1.3 × 10~(-10))Farad and decreased with increasing applied frequency.This can be attributed to the conductive grains become more active at the higher frequency,hence increasing the hopping frequency of electron Fe~(3+)and Fe~(2+)ions.The refractive index(n)of the sample was 24.2 and increases with the increase of dielectric constant at low frequency.Keywords.Dielectric properties,nanoparticles,encapsulation,and PEG-400.
机译:通过聚乙二醇(PEG)包封的Mn_(0.5)Zn_(0.5)Zn_(0.5)Fe2O4纳米颗粒(NPS)的介电性能作为在室温下为5kHz至120kHz的频率的函数.PEG-CNCAPSIOLMMN_(0.5)通过共沉淀法合成Zn_(0.5)Fe 2 O 4 NPS,具有各种PEG浓度。X射线衍射(XRD)图案证实Mn_(0.5)Zn_(0.5)Fe 2 O 4 NPS具有立方尖晶石结构。样品的微晶尺寸12.5nm,然后随着PEG浓度的增加而降低。由于PEG包封后的聚集,样品的真正介电常数(ε')为320.2,随着PEG浓度的增加而降低,预计微晶尺寸的降低。样品的假想介电常数(ε')和损耗切线(棕褐色8)分别具有360.2和1.1的值,随着PEG浓度的增加而降低,这是由于漂移流动性的降低电荷携带。AC C.样品的Onductivity(σ)(1.1×10〜(-4))KΩ〜(-1),随着PEG浓度的增加而降低,这可能是由于样品的阳离子分布的变化。的电容样品(4.5×10〜(-11))法拉和随着PEG浓度的增加而降低,还原晶体尺寸的降低。诸如诸如实际介电常数(ε')和虚介电常数(ε “)样品的值分别具有521.1和393.8的值,随着施加频率的增加而降低;这是由于,在某些频率上方,铁和铁离子之间的电子交换不遵循所施加的田间。样品的AC电导率是(2.1×10〜(-4))KΩ〜(-1)和随着施加频率的增加而增加,相反,样品的电容(C)是(1.3×10〜(-10))法拉德,随着施加频率的增加而降低。这可以归因于导电颗粒在较高频率下变得更加活跃,因此,增加了电子Fe〜(3+)和Fe〜(2+)离子的跳频频率。样品的折射率(N)为24.2,随着低频率的介电常数的增加而增加。单词。纳米粒子,封装和PEG-400。

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