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Patterning micro- and nano-structured FePt by direct imprint lithography

机译:通过直接压印光刻对微米和纳米结构的FePt进行图案化

摘要

The merits of high thermal stability and active chemical catalysis make FePt a suitable material for various purposes such as recording media and catalysts for growing carbon nanotubes. Comparing to other micro and nano patterning techniques such as electron beam lithography and X-ray lithography, imprint patterning is of low cost and high throughput, making it the most promising method for mass manufacturing at micro and nano scales. Direct imprint lithography using functional materials as resist avoids the etching process which introduces defects and errors. Here we use direct imprint to pattern the FePt-containing polymer in order to acquire different micro- and nano-structured FePt on silicon wafers. Regularly-arranged hole and line arrays with periodicity down to 400 nm were acquired on the PDMS stamps. Using direct imprint lithography, the negative copies of the PDMS stamps were successfully transferred to silicon substrates as characterized by scanning electron microscopy (SEM). The magnetic force microscopy (MFM) images showed that the ferromagnetic properties of the patterns were all well preserved after annealing, indicating this direct imprint patterning method can effectively pattern FePt on silicon substrates at both micro- and nano-scales with the magnetic properties retained.
机译:高热稳定性和活性化学催化的优点使FePt成为用于各种目的的合适材料,例如记录介质和用于生长碳纳米管的催化剂。与诸如电子束光刻和X射线光刻之类的其他微和纳米图案化技术相比,压印图案化具有低成本和高产量的特点,使其成为在微米和纳米级大规模生产的最有前途的方法。使用功能材料作为抗蚀剂的直接压印光刻技术避免了引入缺陷和错误的蚀刻过程。在这里,我们使用直接压印法对含FePt的聚合物进行图案化,以在硅片上获得不同的微结构和纳米结构的FePt。在PDMS压模上获得周期低至400 nm的规则排列的孔和线阵列。使用直接压印光刻技术,通过扫描电子显微镜(SEM)表征,PDMS印模的负片被成功转移到硅基板上。磁力显微镜(MFM)图像显示,图案的铁磁性能在退火后都得到了很好的保留,这表明这种直接压印图案化方法可以在微米和纳米尺度上有效地将FePt图案化在硅基板上,并保留了磁性。

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