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Automatic hammering of nano-patterns on special polymer film by using a vibrating AFM tip

机译:通过使用振动AFM尖端在特殊的聚合物薄膜上自动锤击纳米图案

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摘要

Complicated nano-patterns with linewidth less than 18 nm can be automatically hammered by using atomic force microscopy (AFM) tip in tapping mode with high speed. In this study, the special sample was thin poly(styrene-ethylene/butylenes-styrene) (SEBS) block copolymer film with hexagonal spherical microstructures. An ordinary silicon tip was used as a nano-hammer, and the entire hammering process is controlled by a computer program. Experimental results demonstrate that such structure-tailored thin films enable AFM tip hammering to be performed on their surfaces. Both imprinted and embossed nano-patterns can be generated by using a vibrating tip with a larger tapping load and by using a predefined program to control the route of tip movement as it passes over the sample’s surface. Specific details for the fabrication of structure-tailored SEBS film and the theory for auto-hammering patterns were presented in detail.
机译:线宽小于18 nm的复杂纳米图案可以使用原子力显微镜(AFM)尖端以轻敲模式自动锤打。在这项研究中,特殊的样品是具有六边形球形微观结构的聚(苯乙烯-乙烯/丁烯-苯乙烯)(SEBS)嵌段共聚物薄膜。普通的硅尖被用作纳米锤,整个锤击过程由计算机程序控制。实验结果表明,这种结构定制的薄膜能够在其表面上进行AFM尖端锤击。压印和压纹纳米图案都可以通过使用具有较大敲击载荷的振动吸头以及通过预定义程序来控制吸头在样品表面上移动的路径来生成。详细介绍了结构定制的SEBS薄膜的制造细节和自动锤击图案的理论。

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