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Weakly bound buffer layer as a template for metallic nano-clusters growth and film laser-patterning

机译:弱结合的缓冲层作为金属纳米团簇生长和薄膜激光图案化的模板

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Growth of metallic nano-clusters and control over their size are critically important for catalysis. Development of film patterning procedures at the nanometer scale has significant impact on future lithography. In this work, we present an approach to grow metallic nano-clusters and control their size using a weakly bound buffer layer as an intermediate substance and a template to control the clusters size at the range 1-15 nm. The buffer layer was further employed to create a pattern based on a selective laser ablation procedure. A thicker metallic film deposited on top of pre-patterned buffer layer has been demonstrated as a novel patterning technique at the sub-micron to nanometer scale employing a single laser pulse. The thermal stability of metallic structures prepared this way has been studied at temperature up to 1000 K.
机译:金属纳米团簇的生长和对其尺寸的控制对于催化至关重要。纳米级薄膜图案化程序的发展对未来的光刻技术具有重大影响。在这项工作中,我们提出了一种使用弱结合的缓冲层作为中间物质和模板将金属纳米簇生长并控制其尺寸的方法,以将簇的尺寸控制在1-15 nm的范围内。缓冲层还被用于基于选择性激光烧蚀程序来产生图案。作为一种新颖的构图技术,已经证明了沉积在预构图的缓冲层顶部的较厚的金属膜是使用单个激光脉冲的亚微米至纳米级的。已经研究了在高达1000 K的温度下以这种方式制备的金属结构的热稳定性。

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