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基于纳米悬浮液电喷共射的各向异性杂化粒子。

Anisotropic hybrid particles based on electrohydrodynamic co-jetting of nanoparticle suspensions.

机构信息

Department of Chemical Engineering, University of Michigan, Ann Arbor, MI 48109, USA.

出版信息

Phys Chem Chem Phys. 2010 Oct 14;12(38):11894-9. doi: 10.1039/c0cp00264j. Epub 2010 Sep 15.

Abstract

Electrohydrodynamic co-jetting of two different nanocrystal suspensions can result in anisotropic nanocomposite particles. Using this approach, we are able to prepare submicron-sized, spherical Janus particles (464 ± 242 nm), which are not only comprised of two chemically distinct compartments, but are also morphologically anisotropic. Specifically, multifunctional hybrid particles have been derived, which are composed of a crosslinked copolymer, poly(acrylamide-co-acrylic acid) (p(AAm-co-AA)), and compartmentalized with respect to two metal oxides, i.e. titanium dioxide (TiO(2)) and magnetite (Fe(3)O(4)). Due to size as well as optical color differences between the Fe(3)O(4) (∼10 nm) and TiO(2) (<100 nm) loadings, the surface morphology of the two compartments are significantly different and the particles display magnetic, optical, and interfacial anisotropy. Magnetic anisotropy of the particles has been utilized to control the particles' positioning in an external magnetic field, which--with further work--may lead to magnetically switchable surfaces for display applications.

摘要

双组分纳米晶悬浮液的电动力学共喷射可以得到各向异性的纳米复合材料颗粒。我们采用这种方法能够制备亚微米级的、球形的 Janus 颗粒(464 ± 242nm),这些颗粒不仅由两种化学性质截然不同的隔室组成,而且形态上也是各向异性的。特别地,已经衍生出多功能的杂化颗粒,它们由交联共聚物聚(丙烯酰胺-co-丙烯酸)(p(AAm-co-AA))组成,并与两种金属氧化物,即二氧化钛(TiO(2))和磁铁矿(Fe(3)O(4))分隔开。由于 Fe(3)O(4)(~10nm)和 TiO(2)(<100nm)负载物之间的尺寸和光学颜色差异,两个隔室的表面形态有显著的不同,并且颗粒表现出磁、光和界面各向异性。颗粒的磁各向异性可用于控制颗粒在外磁场中的定位,这可能会进一步导致用于显示应用的可磁切换表面。

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