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铁磁流体中聚合物胶体的磁组装及其显示应用。

The magnetic assembly of polymer colloids in a ferrofluid and its display applications.

机构信息

Department of Chemistry, Tongji University, Shanghai, China.

出版信息

Nanoscale. 2012 Mar 7;4(5):1598-605. doi: 10.1039/c2nr12024k. Epub 2012 Feb 2.

Abstract

Nonmagnetic polymer colloids have been assembled into colloidal photonic crystals in a ferrofluid by applying an external magnetic field based on the dipole-dipole interactions of "magnetic holes". The photonic crystal disassembles immediately when the magnetic field is removed. The mechanism of assembly can be explained by two simultaneous processes: phase separation and colloidal assembly. In this work, increasing the size of the building blocks still produces colorful photonic crystals due to their 2nd order diffraction. With a larger building block, the magnetic response between the polymer colloids is greatly enhanced so that an instant and reversible assembly/disassembly can be realized in a much weaker magnetic field and lower ferrofluid concentration. Based on these investigations, a magnetically controlled photonic display unit has been fabricated, which works in a weak magnetic field, has stable reflection signals and possesses fast and reversible on/off switching of reflections.

摘要

非磁性聚合物胶体在外磁场的作用下通过“磁孔”的偶极-偶极相互作用组装成胶体光子晶体。当磁场移除时,光子晶体立即解组装。组装的机制可以通过两个同时发生的过程来解释:相分离和胶体组装。在这项工作中,由于二阶衍射,增大构建块的尺寸仍然可以产生彩色光子晶体。对于较大的构建块,聚合物胶体之间的磁响应大大增强,因此可以在较弱的磁场和较低的铁磁流体浓度下实现瞬时和可逆的组装/解组装。基于这些研究,已经制造出一种磁控光子显示单元,它在弱磁场下工作,具有稳定的反射信号,并具有快速和可逆的反射开关。

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