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首页> 外文期刊>Nanotechnology >Magnetic switching of optical reflectivity in nanomagnet/micromirror suspensions: colloid displays as a potential alternative to liquid crystal displays
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Magnetic switching of optical reflectivity in nanomagnet/micromirror suspensions: colloid displays as a potential alternative to liquid crystal displays

机译:纳米磁铁/微镜悬浮液中光学反射率的磁性转换:胶体显示器可替代液晶显示器

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摘要

Two-particle colloids containing nanomagnets and microscale mirrors can be prepared from iron oxide nanoparticles, microscale metal flakes and high-density liquids stabilizing the mirror suspension against sedimentation by matching the constituent's density. The free Brownian rotation of the micromirrors can be magnetically controlled through an anisotropic change in impulse transport arising from impacts of the magnetic nanoparticles onto the anisotropic flakes. The resulting rapid mirror orientation allows large changes in light transmission and switchable optical reflectivity. The preparation of a passive display was conceptually demonstrated through colloid confinement in a planar cavity over an array of individually addressable solenoids and resulted in 4 x 4 digit displays with a reaction time of less than 100 ms.
机译:包含纳米磁铁和微镜的两粒子胶体可以由氧化铁纳米粒子,微金属片和高密度液体制备,通过匹配成分的密度来稳定镜悬浮液以防止沉淀。微镜的自由布朗尼旋转可以通过由磁性纳米粒子撞击到各向异性薄片上引起的脉冲传输中的各向异性变化来磁性控制。所产生的快速反射镜方向允许光透射率和可切换的光反射率发生较大变化。从概念上讲,无源显示器的制备是通过将胶体限制在单个可寻址螺线管阵列上方的平面腔中来实现的,并产生了4 x 4位数字显示器,反应时间少于100毫秒。

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