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Fe(3)O(4)/香豆素双功能化亚微米级Janus颗粒的组装与操控

Assembly and manipulation of Fe(3)O(4)/coumarin bifunctionalized submicrometer Janus particles.

作者信息

Chao Yi-Cheng, Huang Wei-Hao, Cheng Keng-Ming, Kuo Changshu

机构信息

Department of Materials Science and Engineering, National Cheng Kung University , Tainan, 701-01, Taiwan.

出版信息

ACS Appl Mater Interfaces. 2014 Mar 26;6(6):4338-45. doi: 10.1021/am5000189. Epub 2014 Mar 13.

Abstract

Magnetic and fluorescent bifunctionalized Janus particles were fabricated via sequential particle embedding and surface modifications. The two hemispherical surfaces of a 500 nm silica particle were separately functionalized with Fe3O4 nanoparticles and coumarin dye molecules. The Fe3O4 hemisphere exhibited magnetically driven particle orientation and alignment, whereas the coumarin hemisphere served as an anisotropic emission indicator. The photoluminescence of these orientated and solidified Janus particles revealed anisotropic emission contrast as high as 40% between the magnet-aspect and the dye-aspect excitations. The dynamic anisotropic emission of the bifunctionalized Janus suspension under magnetic manipulation also revealed a nonsynchronized bulk correlation time that was much slower than that of an individual 500 nm particle. Under a static magnetic field, the suspended Janus particles assembled into a grape-like bunch, with random particle orientation. Unlike their microscale counterparts, the submicrometer magnetic Janus particles were less sensitive to gravity and more vulnerable to particle-particle interactions.

摘要

通过连续的颗粒包埋和表面修饰制备了磁性和荧光双功能化的Janus颗粒。一个500纳米的二氧化硅颗粒的两个半球形表面分别用Fe3O4纳米颗粒和香豆素染料分子进行功能化。Fe3O4半球表现出磁驱动的颗粒取向和排列,而香豆素半球用作各向异性发射指示剂。这些取向和固化的Janus颗粒的光致发光显示,在磁面和染料面激发之间,各向异性发射对比度高达40%。在磁操纵下,双功能化Janus悬浮液的动态各向异性发射还显示出一个非同步的整体相关时间,该时间比单个500纳米颗粒的相关时间慢得多。在静磁场下,悬浮的Janus颗粒组装成葡萄状束,颗粒取向随机。与微米级的同类颗粒不同,亚微米级磁性Janus颗粒对重力不太敏感,更容易受到颗粒间相互作用的影响。

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