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Atomic-force microscopy of gold nanocrsytallites on smooth and stepped strontium titanate surfaces

机译:金纳米钛钛合金钛酸锶表面上的金纳米杆菌的原子力显微镜

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We have studied the nucleation and growth of Au nanocrystallites with dimensions of tens of nanometers on strontium titanate surfaces using an atomic force microscope. Strontium titanate ablated from a pressed pellet target by a KrF laser was deposited on both planar and offcut strontium titanate substrates. In a separate step. submonolayer quantities of gold were deposited, also by pulsed laser deposition, on the strontium titanate. The surfaces were then scanned by an atomic-force microscope to determine the effects of surface defects (such as steps and kinks on offcut surfaces), substrate temperature, and gold ablation yield on the nucleation, growth and size distribution of the nanocrystallites. The competition between diffusion and nucleation on planar vs stepped surfaces was particularly apparent in the AFM images. These results suggest several ways in which lateral decoration of the strontium titanate by the gold nanocrystallites can be achieved, an important step toward designer nonlinear photonic materials.
机译:我们研究了使用原子力显微镜在钛酸锶表面上具有数十纳米尺寸的Au纳米晶体的成核和生长。钛酸锶通过KRF激光从压制的颗粒靶烧成的钛酸锶沉积在两个平面和切割钛酸锶锶锶上。在一个单独的步骤中。在钛酸锶上也通过脉冲激光沉积沉积亚底糖量金量。然后通过原子力显微镜扫描表面,以确定表面缺陷的影响(例如在摘物表面上的步骤和扭结),衬底温度和纳米晶体的成核的生长和尺寸分布上的金融烧蚀产率。在AFM图像中,平面VS阶梯表面的扩散和成核之间的竞争尤其明显。这些结果表明了几种方式,可以实现金纳米晶体的钛酸锶的横向装饰,这是朝向设计者非线性光子材料的重要步骤。

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