MESA+ Institute for Nanotechnology (BNT), University of Twente, PO Box 207, 7500 AE Enschede (The Netherlands).
Angew Chem Int Ed Engl. 2014 Nov 10;53(46):12446-50. doi: 10.1002/anie.201404312. Epub 2014 Sep 4.
Organizing magnetic nanoparticles into long-range and dynamic assemblies would not only provide new insights into physical phenomena but also open opportunities for a wide spectrum of applications. In particular, a major challenge consists of the development of nanoparticle-based materials for which the remnant magnetization and coercive field can be controlled at room temperature. Our approach consists of promoting the self-organization of magnetic nanoparticles in liquid crystals (LCs). Using liquid crystals as organizing templates allows us to envision the design of tunable self-assemblies of magnetic nanoparticles, because liquid crystals are known to reorganize under a variety of external stimuli. Herein, we show that twisted liquid crystals can be used as efficient anisotropic templates for superparamagnetic nanoparticles and demonstrate the formation of hybrid soft magnets at room temperature.
将磁性纳米粒子组织成长程和动态组装不仅将提供对物理现象的新见解,而且为广泛的应用开辟机会。特别是,一个主要的挑战在于开发基于纳米粒子的材料,其中剩磁和矫顽场可以在室温下控制。我们的方法包括促进磁性纳米粒子在液晶(LC)中的自组织。使用液晶作为组织模板,我们可以设想设计可调谐的磁性纳米粒子自组装,因为众所周知,液晶在各种外部刺激下会重新排列。在这里,我们表明,扭曲的液晶可以用作超顺磁纳米粒子的有效各向异性模板,并证明了室温下混合软磁体的形成。