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Ultrasonically assisted deposition of colloidal crystals

机译:超声辅助沉积胶体晶体

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摘要

Colloidal particles are a versatile physical system which have found uses across a range of applications such as the simulation of crystal kinetics, etch masks for fabrication, and the formation of photonic band-gap structures. Utilization of colloidal particles often requires a means to produce highly ordered, periodic structures. One approach is the use of surface acoustic waves (SAWs) to direct the self-assembly of colloidal particles. Previous demonstrations using standing SAWs were shown to be limited in terms of crystal size and dimensionality. Here, we report a technique to improve the spatial alignment of colloidal particles using traveling SAWs. Through control of the radio frequency power, which drives the SAW, we demonstrate enhanced quality and dimensionality of the crystal growth. We show that this technique can be applied to a range of particle sizes in the μm-regime and may hold potential for particles in the sub-μm-regime.
机译:胶体粒子是一种通用的物理系统,已发现其在一系列应用中的用途,例如模拟晶体动力学,制造用蚀刻掩模以及形成光子带隙结构。利用胶体颗粒通常需要一种产生高度有序的周期性结构的方法。一种方法是使用表面声波(SAW)指导胶体颗粒的自组装。以往使用站立式声表面波的演示显示出晶体尺寸和尺寸有限。在这里,我们报告一种技术,使用行进的声表面波来改善胶体颗粒的空间排列。通过控制驱动声表面波的射频功率,我们证明了晶体生长的质量和尺寸得到了提高。我们表明,该技术可以应用于μm区域中的各种粒径,并且可以保持亚μm区域中的颗粒的潜力。

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  • 来源
    《Applied Physics Letters》 |2014年第3期|031113.1-031113.4|共4页
  • 作者单位

    Lehrstuhl fuer Experimentalphysik 1 and Augsburg Centre for Innovative Technologies (ACIT), Universitaet Augsburg, 86159 Augsburg, Germany,Centre for Quantum Dynamics, Griffith University, Brisbane 4111, Australia;

    Centre for Quantum Dynamics, Griffith University, Brisbane 4111, Australia;

    Lehrstuhl fuer Experimentalphysik 1 and Augsburg Centre for Innovative Technologies (ACIT), Universitaet Augsburg, 86159 Augsburg, Germany,Nanosystems Initiative Munich (NIM), Schellingstr. 4, 80779 Muenchen, Germany;

    Lehrstuhl fuer Experimentalphysik 1 and Augsburg Centre for Innovative Technologies (ACIT), Universitaet Augsburg, 86159 Augsburg, Germany,Nanosystems Initiative Munich (NIM), Schellingstr. 4, 80779 Muenchen, Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 03:15:57

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