School of Physics and Astronomy, University of Leeds, Woodhouse Lane, Leeds, LS2 9JT, UK and School of Chemistry, University of Bristol, Cantock's Close, Bristol, BS8 1TS, UK.
Department of Chemistry, University of Sheffield, Dainton Building, Brook Hill, S3 7HF, UK.
Nanoscale. 2016 Jun 2;8(22):11738-47. doi: 10.1039/c6nr03330j.
Patterned thin-films of magnetic nanoparticles (MNPs) can be used to make: surfaces for manipulating and sorting cells, sensors, 2D spin-ices and high-density data storage devices. Conventional manufacture of patterned magnetic thin-films is not environmentally friendly because it uses high temperatures (hundreds of degrees Celsius) and high vacuum, which requires expensive specialised equipment. To tackle these issues, we have taken inspiration from nature to create environmentally friendly patterns of ferromagnetic CoPt using a biotemplating peptide under mild conditions and simple apparatus. Nano-patterning via interference lithography (IL) and micro-patterning using micro-contact printing (μCP) were used to create a peptide resistant mask onto a gold surface under ambient conditions. We redesigned a biotemplating peptide (CGSGKTHEIHSPLLHK) to self-assemble onto gold surfaces, and mineralised the patterns with CoPt at 18 °C in water. Ferromagnetic CoPt is biotemplated by the immobilised peptides, and the patterned MNPs maintain stable magnetic domains. This bioinspired study offers an ecological route towards developing biotemplated magnetic thin-films for use in applications such as sensing, cell manipulation and data storage.
磁性纳米粒子(MNPs)的图案化薄膜可用于制造:用于操纵和分选细胞的表面、传感器、二维自旋冰和高密度数据存储设备。传统的图案化磁性薄膜制造方法不环保,因为它需要使用高温(数百摄氏度)和高真空,这需要昂贵的专用设备。为了解决这些问题,我们从大自然中获得灵感,在温和的条件下使用生物模板肽制造了环保的铁磁性 CoPt 图案,而无需使用昂贵的专用设备。通过干涉光刻(IL)和微接触印刷(μCP)进行纳米图案化,在环境条件下在金表面上创建了一个具有抗肽性的掩模。我们重新设计了一种生物模板肽(CGSGKTHEIHSPLLHK),使其在金表面上自组装,并在 18°C 的水中用 CoPt 矿化图案。固定化肽使铁磁 CoPt 具有生物模板性,并且图案化的 MNPs 保持稳定的磁畴。这项受生物启发的研究为开发用于传感、细胞操作和数据存储等应用的生物模板化磁性薄膜提供了一种生态途径。