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具有长程有序纳米粒子的电可调谐和光可调谐的等离子体超分子液晶。

Electrically and optically tunable plasmonic guest-host liquid crystals with long-range ordered nanoparticles.

机构信息

Department of Physics and ‡Department of Electrical, Computer, and Energy Engineering, Materials Science and Engineering Program, and Liquid Crystal Materials Research Center, University of Colorado , Boulder, Colorado 80309, United States.

出版信息

Nano Lett. 2014 Jul 9;14(7):4071-7. doi: 10.1021/nl501581y. Epub 2014 Jun 5.

Abstract

Practical guest-host devices in which dichroic dye molecules follow electrical switching of a liquid crystal host remain elusive for decades despite promising efficient displays and emergent applications such as smart windows. This is mainly because of poor stability, surface precipitation, and limited means for property engineering of the dyes. To overcome these challenges, we develop plasmonic metal nanoparticle analogues of dichroic guest-host liquid crystals. Nematic dispersions of aligned anisotropic gold nanoparticles are obtained by polymer passivation of their surfaces to impose weak tangential boundary conditions for orientation of anisotropic host molecules. Control of the ensuing surface interactions leads to long-range ordered colloidal dispersions, allowing for collective optical and electrical switching of rod- and platelet-like nanoparticles. This facile control of mesostructured plasmonic medium's optical properties in visible and infrared spectral ranges is of interest for many applications.

摘要

实用的客-主设备,其中二向色染料分子跟随液晶主客体的电开关,尽管有高效显示和新兴应用,如智能窗户,但几十年来仍然难以捉摸。这主要是因为染料的稳定性差、表面沉淀和有限的性能工程手段。为了克服这些挑战,我们开发了二向色客-主液晶的等离子体金属纳米粒子类似物。各向异性金纳米粒子的向列分散体通过聚合物对其表面进行钝化来获得,以对各向异性主客体分子的取向施加弱切向边界条件。对后续表面相互作用的控制导致长程有序胶体分散体,从而实现棒状和盘状纳米粒子的集体光学和电开关。这种在可见和红外光谱范围内对介观结构等离子体介质光学性质的简便控制对许多应用都很有意义。

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