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The theoretical study on electronic structure and electromagnetic properties of alpha-MnO2 based on crystal defects

机译:基于晶体缺陷的α-MnO2电子结构和电磁性质的理论研究

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摘要

First-principles calculations based on density functional theory (DFT) have been carried out to investigate the effects of crystal defects (intrinsic vacancy defects and ion doping) on the microwave dielectric response and the correlative electromagnetic properties of alpha-MnO2 systematically. The possible role of crystal defects in electromagnetic performance is studied utilizing density of states (DOS) and the bond length between the manganese and oxygen. Lattice distortion is induced by the introduction of crystal defects. The spin-electronic DOS demonstrates that Ni doping enhances the spin-polarization of MnO2, which indicates that the Ni-doped MnO2 possesses certain magnetic characteristic, which is helpful for magnetic loss. The emergence of a new defect mode, contributes to the relaxation polarization phenomenon, so as to enhance the dielectric loss ability. In addition, through the change of the bond length and pseudo gap width, it can be learned that the bond strength and covalency of Mn-O bonds are weakened, which increases the dielectric loss of MnO2. The results throw light on the exploration of theoretical research on the microwave absorbing properties of MnO2 with crystal defects.
机译:已经进行了基于密度泛函理论(DFT)的第一性原理计算,以系统地研究晶体缺陷(本征空位缺陷和离子掺杂)对微波介电响应和α-MnO2的相关电磁性能的影响。利用态密度(DOS)和锰与氧之间的键长研究了晶体缺陷在电磁性能中的可能作用。晶格畸变是由晶体缺陷的引入引起的。自旋电子DOS表明,Ni掺杂增强了MnO2的自旋极化,这表明掺Ni的MnO2具有一定的磁特性,这有助于磁损耗。一种新的缺陷模式的出现,有助于弛豫极化现象,从而增强了介电损耗能力。另外,通过改变键长和伪间隙宽度,可知Mn-O键的键强度和共价性变弱,从而增加了MnO 2的介电损耗。研究结果为具有晶体缺陷的MnO2的微波吸收特性的理论研究提供了参考。

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