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Growth of arrays of oriented epitaxial platinum nanoparticles with controlled size and shape by natural colloidal lithography

机译:通过自然胶体光刻法生长尺寸和形状可控的定向外延铂纳米颗粒阵列

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摘要

We developed a method for production of arrays of platinum nanocrystals of controlled size and shape using templates from ordered silica bead monolayers. Silica beads with nominal sizes of 150 and 450 nm were self-assembled into monolayers over strontium titanate single crystal substrates. The monolayers were used as shadow masks for platinum metal deposition on the substrate using the three-step evaporation technique. Produced arrays of epitaxial platinum islands were transformed into nanocrystals by annealing in a quartz tube in nitrogen flow. The shape of particles is determined by the substrate crystallography, while the size of the particles and their spacing are controlled by the size of the silica beads in the monolayer mask. As a proof of concept, arrays of platinum nanocrystals of cubooctahedral shape were prepared on (100) strontium titanate substrates. The nanocrystal arrays were characterized by atomic force microscopy, scanning electron microscopy, and synchrotron X-ray diffraction techniques.
机译:我们开发了一种使用有序硅珠单层模板生产尺寸和形状可控的铂纳米晶体阵列的方法。将标称尺寸为150和450 nm的硅珠自组装成钛酸锶单晶衬底上的单层。使用三步蒸发技术,将单层用作荫罩,用于在基板上沉积铂金属。通过在氮气流中在石英管中退火,将产生的外延铂岛阵列转变为纳米晶体。颗粒的形状由基材晶体学确定,而颗粒的大小及其间距则由单层掩膜中的二氧化硅珠粒的大小控制。作为概念的证明,在(100)钛酸锶衬底上制备了立方八面体形状的铂纳米晶体阵列。通过原子力显微镜,扫描电子显微镜和同步加速器X射线衍射技术对纳米晶体阵列进行了表征。

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