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2-doped Gd 2O 3 with their magnetic and luminescent properties]]>

机译:<![CDATA [关于无定形结晶纳米粉末的孔隙度和结构缺陷的相互关系和结构缺陷SIO 2 - DOPED GD 2 O 3 具有它们的磁性和发光性能]]]>

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摘要

The pulsed electron beam evaporation method (PEBE) was used to obtain mesoporous amorphous-crystalline pure and SiO2-doped Gd2O3nanopowders (NPs). An HRTEM phase analysis showed the existence in nanopowder Gd2O3of an amorphous, as well as three crystalline phases. The influence of silicon oxide doping on the textural, magnetic and luminescent properties of NPs Gd2O3@SiO2was studied. The size and volume of the interparticle pores of NPs Gd2O3@SiO2was dependant on the concentration of a dopant. The doping supported an increase in amorphicity and the growth of a concentration of different structural defects in NPs. Two different processes – annealing and doping, led to crystallinity degradation of the Gd2O3matrix. The correlation of porosity concentration dependences, paramagnetic response, and the intensity of pulsed cathodoluminescence spectra in NPs Gd2O3@SiO2was revealed. The dependence of the paramagnetic response Gd2O3on the volume of interparticle mesopores in nonporous nanoparticles expands our understanding of the nature of diluted magnetic semiconductors.
机译:脉冲电子束蒸发方法(PEBE)用于获得介孔无定形结晶纯和SiO2掺杂的Gd2O3nanopowders(NPS)。 HRTEM相分析显示纳米粉末Gd2O3的存在,以及三个结晶相。氧化硅掺杂对NPS GD2O3施工,磁性和发光特性的影响研究。 NPS GD2O3粒子孔的尺寸和体积依赖于掺杂剂的浓度。掺杂支持的无育增加和NPS中不同结构缺陷的浓度的增长。两种不同的过程 - 退火和掺杂,导致Gd2O3matrix的结晶性降解。孔隙浓度依赖性,顺磁反应和NPS GD2O3中的脉冲阴极发光光谱强度的相关性显示。顺磁响应Gd2O3的依赖性Gd2O3孔中颗粒中的颗粒间中孔的体积扩大了我们对稀释磁半导体性质的理解。

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