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2B 2V 3O 12(B=Mg, Zn) ceramics]]>

机译:<![CDATA [CDATA [晶体结构和微波介电特性NAPB 2 B 2 V < CE:INF LOC =“POST”> 3 O 12 (B = MG,ZN)陶瓷]]>

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摘要

Two low temperature sintered NaPb2B2V3O12(B?=?Mg, Zn) ceramics with garnet structure were synthesized through conventional solid state reaction route and their crystal structure and microwave dielectric properties were investigated for the first time. Rietveld refinements of XRD patterns show both the compounds belong to cubic symmetry with space groupIa-3d. Observed number of Raman bands and group theoretical predictions also confirm cubic symmetry with space groupIa-3dfor both NPMVO and NPZVO. At the optimum sintering temperature of 725?°C NPMVO has a relative permittivity of 20.6?±?0.2, unloaded quality factor (Quxf) of 22,800?±?1500?GHz (f?=?7.7?GHz) and temperature coefficient of resonant frequency +25.1?±?1?ppm/°C while NPZVO has relative permittivity of 22.4?±?0.2, Quxf of 7900?±?1500?GHz (f?=?7.4?GHz) and near zero temperature coefficient of resonant frequency of -6?±?1?ppm/°C at 650?°C. The relative permittivity of the compounds is inversely related to the corresponding Raman shifts.
机译:通过常规固态反应路径合成具有石榴石结构的两个低温烧结的NaPB2B2V3O12(B?=γmg,Zn)陶瓷,首次研究了它们的晶体结构和微波介电性能。 XRD模式的RIETVELD改进表明,两者都属于与空间集团-3D的立方对称。观察到的拉曼频段和组理论预测数量也用空间Groupia-3d为NPMVO和NPZVO确认立方对称性。在最佳烧结温度为725?°C NPMVO的相对介电常数为20.6?±0.2,卸载质量因子(QUXF)为22,800?±1500?GHz(F?=Δ7.7?GHz)和温度谐振系数频率+25.1?±1?ppm /°C,而NPZVO的相对介电常数为22.4?±0.2,QUXF为7900?±1500?GHz(f?=?7.4?GHz)和近零温度系数谐振​​频率在650°C的-6?±1?ppm /°C。化合物的相对介电常数与相应的拉曼偏移相反。

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