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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Positron annihilation and correlated dielectric property studies of a transition metal oxide-modified quaternary nanocomposite 0.1P(2)O(5)-0.4ZnO-0.5(xV(2)O(5)-(1-x)MoO3)
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Positron annihilation and correlated dielectric property studies of a transition metal oxide-modified quaternary nanocomposite 0.1P(2)O(5)-0.4ZnO-0.5(xV(2)O(5)-(1-x)MoO3)

机译:转发金属氧化物改性季纳米复合材料0.1P(2)O(5)-0.4ZNO-0.5(XV(2)O(5) - (1-X)Moo3)的正电子湮没和相关介电性质研究。

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摘要

The intrinsic defect properties and dielectric characteristics of the metal oxide nanocomposite 0.1P(2)O(5)-0.4ZnO-0.5(xV(2)O(5)-(1-x)MoO3) for x = 0.0, 0.2, 0.4, 0.6, 0.8 and 1.0 have been studied in this work. The samples were prepared through the process of melt quenching and the existence of different functional groups or chemical bonds were studied by Fourier transform infrared spectroscopy. X-ray diffraction patterns and transmission electron microscopic images were used to determine the size, shape, distribution and morphology of the different nanocrystallites, which were found being formed at particular stages of modification. The presence of defects and the development of amorphous glassy networks were verified from positron annihilation measurements. The newly formed nanocrystallites were superimposed over the amorphous glassy matrices and the small intensities of orthopositronium lifetimes indicated the free volume defects developing at the glass-nanocrystallite interfaces. The positron annihilation trapping rates and the trapped positron fraction confirmed that defects appeared mainly as the outcome of the deficiency of cations at the respective sites and vacancy clusters were formed through the process of agglomeration. The porosity, which is a specific feature of the glassy amorphous matrix or network being formed, was evidently reflected by the positron lifetime parameters in the intermediate (x = 0.4-0.6) stages of modification. The dielectric properties of the nanocomposites were measured at various temperatures and frequencies and the dielectric constant (epsilon') and dielectric loss (epsilon '') were found to decrease with rising frequency and increase with the rise in temperature. The investigation of the scaling property of electric modulus revealed temperature independent and composition dependent conductivity or dielectric relaxation mechanism. The correlation among the various measured parameters and the implications are discussed. (C) 2021 Elsevier B.V. All rights reserved.
机译:本文研究了金属氧化物纳米复合材料0.1P(2)O(5)-0.4ZnO-0.5(xV(2)O(5)-(1-x)MoO3)在x=0.0、0.2、0.4、0.6、0.8和1.0时的本征缺陷特性和介电特性。通过熔融淬火制备样品,并通过傅里叶变换红外光谱研究不同官能团或化学键的存在。利用X射线衍射图和透射电子显微镜图像确定了不同纳米晶的大小、形状、分布和形态,发现这些纳米晶是在特定的改性阶段形成的。正电子湮没测量证实了缺陷的存在和非晶玻璃网络的发展。新形成的纳米晶叠加在非晶态玻璃基质上,小强度的正电子正电子寿命表明在玻璃-纳米晶界面上形成了自由体积缺陷。正电子湮没俘获率和俘获正电子分数证实,缺陷主要是由于各个位置阳离子的缺乏而产生的,空位团簇是通过凝聚过程形成的。孔隙率是正在形成的玻璃态非晶态基体或网络的一个特定特征,在中间(x=0.4-0.6)改性阶段的正电子寿命参数明显反映了孔隙率。在不同温度和频率下测量了纳米复合材料的介电性能,发现介电常数(ε′)和介电损耗(ε′)随频率的升高而降低,随温度的升高而增加。对电模量标度特性的研究揭示了与温度无关、与成分相关的电导率或介电弛豫机制。讨论了各种测量参数之间的相关性及其影响。(c)2021爱思唯尔B.V.保留所有权利。

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