Liu Xiangyuan, McCandlish Elizabeth F, McCandlish Larry E, Mikulka-Bolen Kate, Ramesh Ramamoorthy, Cosandey Frederic, Rossetti George A, Riman Richard E
Langmuir. 2005 Apr 12;21(8):3207-12. doi: 10.1021/la047655o.
We demonstrated the formation of single-crystal-like materials that contain preferentially oriented arrays of lead zirconate titanate (PZT) cube-shaped particles by self-assembly. Hydrothermally synthesized PZT particles with a bulk composition of Zr/Ti = 70/30 were used in making microcrystal arrays. Spreading a suspension containing PZT cube-shaped particles, 2-propanol, and mineral oil at the air-water interface produced a one-dimensional planar array of PZT particles on the water surface. The array so formed was subsequently transferred onto a flat or curved substrate. X-ray diffraction and electron backscattered diffraction analyses revealed that most of the cube-shaped particles in the array were oriented with their pseudocubic (001) direction aligned parallel to the normal direction of the substrate surface. Filling the arrays with matrixes produced monolayer or multilayer textured composites. The piezoelectric properties of oriented cube-shaped micron-sized particles in the self-assembled arrays were measured using a modified atomic force microscope to reveal the ferroelectric nature of the PZT arrays.
我们通过自组装展示了单晶状材料的形成,该材料包含优先取向排列的钛酸锆酸铅(PZT)立方体形颗粒。水热合成的Zr/Ti = 70/30的块状组成的PZT颗粒用于制备微晶阵列。在空气-水界面上铺展含有PZT立方体形颗粒、2-丙醇和矿物油的悬浮液,在水面上产生了PZT颗粒的一维平面阵列。随后将如此形成的阵列转移到平坦或弯曲的基板上。X射线衍射和电子背散射衍射分析表明,阵列中的大多数立方体形颗粒的伪立方(001)方向与基板表面的法线方向平行排列。用基质填充阵列产生单层或多层织构复合材料。使用改进的原子力显微镜测量自组装阵列中取向的立方体形微米级颗粒的压电性能,以揭示PZT阵列的铁电性质。