Abstract

NaNbO3 (NN) ceramics have attracted worldwide attention as a kind of dielectric material, but with the drawbacks of difficulty in sintering. In this work, high performance NN ceramics were achieved by using cold sintering process assisted post-heat-treatment (CSP-PHT). The effects of cold sintering process (CSP) and post-heat-treatment (PHT) of NN ceramics on the microstructure and electrical properties were systematically investigated. High dense NN ceramics with relative density of 92.6% were achieved by CSP, which increased to 96.9% with improved crystallinity after PHT at 1230 °C. Of particular interest is that the NN ceramics prepared by CSP-PHT exhibited typical ferroelectric hysteresis loops with large polarization of 34.2 μC/cm2, which is much higher than the conventional sintering (CS) method at 1300 °C with value of 24.8 μC/cm2. Our work shows that CSP-PHT is an effective method to obtain high-performance NN ceramics at lower sintering temperature.

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