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Microwave Dielectric Properties Of Low-Temperature-Fired Mgnb(2)O(6)Ceramics For Ltcc Applications

RSC ADVANCES(2020)

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摘要
MgNb(2)O(6)ceramics doped with (Li2O-MgO-ZnO-B2O3-SiO2) glass were synthesized by the traditional solid phase reaction route. The effects of LMZBS addition on microwave dielectric properties, grain growth, phase composition and morphology of MgNb(2)O(6)ceramics were studied. The SEM results show dense and homogeneous microstructure with grain size of 1.72 mu m. Raman spectra and XRD patterns indicate the pure phase MgNb(2)O(6)ceramic. The experimental results show that LMZBS glass can markedly decrease the sintering temperature from 1300 degrees C to 925 degrees C. Higher density and lower porosity make ceramics have better dielectric properties. The MgNb(2)O(6)ceramic doped with 1 wt% LMZBS glass sintered at 925 degrees C for 5 h, possessed excellent dielectric properties:epsilon(r)= 19.7, Q center dot f= 67 839 GHz,tau(f)= -41.01 ppm degrees C-1. Moreover, the favorable chemical compatibility of the MgNb(2)O(6)ceramic with silver electrodes makes it as promising material for low temperature co-fired ceramic (LTCC) applications.
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Ultra-High Temperature Ceramics (UHTCs)
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