甘氨酸和碱性铌酸盐基陶瓷电介质复合材料的合成与表征

H. Mgbemere, Viktoriya Semeykina
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摘要

甘氨酸在极化时表现出微弱的压电响应,而无铅碱性铌酸盐基陶瓷则表现出更高的响应。本研究调查了甘氨酸和(K0.45Na0.51Li0.04)(Nb0.85Ta0.1Sb0.04)O3(KNNLST)陶瓷组合的介电复合材料的合成。陶瓷的生产采用了混合氧化物陶瓷合成法,甘氨酸粉末则从市场上购买。成型和热处理复合材料的成分范围从无陶瓷到陶瓷含量为 100 wt.%。X 射线衍射 (XRD)、扫描电子显微镜 (SEM)、介电研究和磁滞测量被用来表征样品。所获得的相从甘氨酸中的单斜相转变为陶瓷中的正方体-四方体两相。样品的形态显示出致密的微观结构,并伴有一些裂缝、较大的孔隙率和较小的晶粒尺寸。介电性能显示,介电常数和损耗值随着陶瓷含量的增加而增加,而交流电导率也随着陶瓷含量的增加而增加。陶瓷含量的增加导致极化滞后图的出现,表明样品具有铁电性。复合材料的特性表明它们可用于机电设备。
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SYNTHESIS AND CHARACTERISATION OF DIELECTRIC COMPOSITES PRODUCED FROM GLYCINE AND ALKALINE NIOBATE-BASED CERAMICS
Glycine exhibits a little piezoelectric response when poled, while lead-free alkaline niobate-based ceramics show much higher responses. This research investigates the synthesis of a dielectric composite from a combination of glycine and (K0.45Na0.51Li0.04) (Nb0.85Ta0.1Sb0.04) O3 (KNNLST) ceramics. The mixed oxide ceramics synthesis method was used to produce the ceramics, while glycine powder was commercially procured. The composition range of the shaped and heat-treated composites is from no ceramics to 100 wt.% ceramics content. X-ray diffraction (XRD), Scanning Electron Microscopy (SEM), dielectric studies, and hysteresis measurements were used to characterize the samples. The obtained phases transformed from the monoclinic phase in glycine to a two-phase orthorhombic-tetragonal phase in the ceramics. The samples’ morphology revealed a dense microstructure with some cracks, large porosity, and smaller grain sizes. The dielectric properties showed increasing dielectric constant and loss values with increasing ceramics content, while the ac conductivity also increased with rising ceramics content. Improving the range of ceramics led to polarization hysteresis graphs indicating ferroelectricity in the samples. The properties of the composites show they can be used in electromechanical devices.
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