Jenko Darja, Bencan Andreja, Malic Barbara, Holc Janez, Kosec Marija
"Jozef Stefan" Institute, Electronic Ceramics Department, Jamova 39, SI-1000 Ljubljana, Slovenia.
Microsc Microanal. 2005 Dec;11(6):572-80. doi: 10.1017/S1431927605050683.
Using electron microscopy, K0.5Na0.5NbO3 (KNN) ceramics sintered at 1030 degrees C for 8 h and 1100 degrees C for 2 and 24 h was studied. The scanning electron microscopy and X-ray spectrometry revealed that the materials consisted of a matrix phase in which the (Na+K)/Nb ratio corresponded closely to the nominal composition and a small amount of Nb-rich secondary phase. A bimodal microstructure of cube-shaped grains was revealed in the fracture and thermally-etched surfaces of the KNN. In the ceramics sintered at 1100 degrees C, the larger grains (up to 30 mum across), contained angular trapped pores. The transmission electron microscopy analysis revealed that the crystal planes of the grains bordering the intragranular pore faces were of the {100} family with respect to the simple perovskite cell. Ferroelectric domains were observed in the grains of this material.
利用电子显微镜,对在1030℃烧结8小时以及在1100℃烧结2小时和24小时的K0.5Na0.5NbO3(KNN)陶瓷进行了研究。扫描电子显微镜和X射线光谱分析表明,这些材料由一个基体相组成,其中(Na + K)/ Nb比与标称成分密切对应,还有少量富Nb的第二相。在KNN的断裂面和热蚀刻表面发现了立方体形晶粒的双峰微观结构。在1100℃烧结的陶瓷中,较大的晶粒(直径达30μm)含有角状截留孔隙。透射电子显微镜分析表明,与晶内孔隙面相邻的晶粒的晶面相对于简单钙钛矿晶胞属于{100}族。在这种材料的晶粒中观察到了铁电畴。