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Nanoscale patterning in ambient conditions using liquid electromigration

机译:使用液体电迁移在环境条件下进行纳米图案化

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Electric field can induce long range flow in liquid materials. This phenomenon is known as liquid electromigration. In particular case of Cr thin film deposited on an insulating substrate, application of high electric-field between two point electrodes results in liquefaction and subsequent flow of the liquefied material in a radially symmetric fashion away from the cathode. This electric field driven material transport phenomenon has been used for a new patterning technique, named electrolithography. A negatively biased scanning probe is used to etch a thin Cr film according to a desired pattern. Then the pattern is transferred to new materials using a polymer layer below the metal film. Electrolithography does not need any UV or e-beam source, and can be performed in ambient condition. We have achieved pattern resolutions of 9 nm on the polymer and 40 nm on transferring the pattern to other materials. In this work, with the help of electrolithography, we have patterned large areas using vector scan technique. This improves throughput of the process by a significant order.
机译:电场可以在液体材料中引起长距离流动。这种现象称为液体电迁移。在沉积在绝缘基板上的Cr薄膜的特定情况下,在两个点电极之间施加高电场会导致液化,并且随后液化材料以径向对称的方式远离阴极流动。这种电场驱动的材料传输现象已用于一种新的构图技术,称为电光刻。负偏压扫描探针用于根据所需图案蚀刻Cr薄膜。然后,使用金属膜下方的聚合物层将图案转移到新材料上。光刻不需要任何紫外线或电子束源,并且可以在环境条件下进行。我们在聚合物上实现了9 nm的图案分辨率,在将图案转移到其他材料上时达到40 nm的图案分辨率。在这项工作中,借助于光刻技术,我们已经使用矢量扫描技术对大面积进行了图案化。这以显着的顺序提高了过程的吞吐量。

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