Ordered domains and microwave properties of sub-micron structured Ba(Zn 1/3 Ta 2/3 )O 3 ceramics obtained by spark plasma sintering

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Abstract

The degree of Zn 2+ and Ta 5+ ions ordering could play an important role in the dielectric loss in Ba(Zn1/3Ta2/3)O3 (BZT) ceramics. However, the influence of the grain size of Ba(B0 1/3 B00 2/3 )O 3 ceramics with nano or sub-micron grains on the ordering domains structure is still not clear. In the present paper, highly dense (~98%) BZT microwave dielectric ceramics with homogeneous sub-micron structure (~330 nm) were prepared through spark plasma sintering (SPS). High resolution transmission electron microscopy combined with X-ray diffraction (XRD)clearly showed that the B-site ordering structure of sintered BZT samples by SPS becomes the B-site long-range 1:2 ordering as annealing proceeds. In contrast, the short-range 1:2 ordering in non-annealed counterparts was also present, which was not detectable by XRD. The size of B-site ordering domains enlarged with annealing temperature. The sub-micron structure of sintered BZT ceramics by SPS remained stable at up to 1400 C; however, the size of B-site 1:2 ordering domain was more than five times larger, which led to a significant increase of the quality factor (Q·f ) to 37,700 GHz from 15,000 GHz.

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Liu, F., Liu, S., Cui, X., Cheng, L., Li, H., Wang, J., & Rao, W. (2019). Ordered domains and microwave properties of sub-micron structured Ba(Zn 1/3 Ta 2/3 )O 3 ceramics obtained by spark plasma sintering. Materials, 12(4). https://doi.org/10.3390/ma12040638

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