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Nanoassembled dynamic optical waveguides and sensors based on zeolite L nanocontainers

机译:基于沸石L纳米容器的纳米组装动态光波导和传感器

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Although optical functional devices as waveguides and sensors are of utmost importance for metrology on the nano scale, the micro-and nano-assembly by optical means of functional materials to create such optical elements has yet not been considered. In the last years, an elegant strategy based on holographic optical tweezers (HOT) has been developed to design and fabricate permanent and dynamic three-dimensional micro- and nano structures based on functional nanocontainers as building blocks. Nanocontainers that exhibit stable and ordered voids to hierarchically organize guest materials are especially attractive. Zeolite L are a type of porous micro-sized crystals which features a high number of strictly one-dimensional, parallel aligned nanochannels. They are highly interesting as building blocks of functional nano-and microsystems due to their potential as nanocontainers to accommodate various different guest molecules and to assemble them in specific configurations. For instance, based on zeolite L crystals, microscopic polarization sensors and chains of several microcrystals for hierarchical supramolecular organization have been realized. Here, we demonstrate the ability of nanocontainers in general, and zeolite L crystals in particular to represent the basic constituent of optical functional microsystems. We show that the capability of HOT to manipulate multitude of non-spherical microparticles in three dimensions can be exploited for the investigation of zeolite L nanocontainers as dynamic optical waveguides. Moreover, we implement as additional elements dye-loaded zeolite L to sense the guiding features of these novel waveguides with high spatial precision and microspheres to enhance the light coupling into the zeolite L waveguides. With this elaborated approach of using nanocontainers as tailored building blocks for functional optical systems a new era of bricking optical components in a lego-like style becomes feasible.
机译:尽管作为波导和传感器的光学功能装置对于纳米级的计量至关重要,但是尚未考虑通过光学手段利用功能材料的光学手段进行的微米级和纳米级组装,以形成此类光学元件。在过去的几年中,已经开发出一种基于全息光学镊子(HOT)的优雅策略,以基于功能性纳米容器为基础,设计和制造永久性和动态性的三维微纳米结构。表现出稳定且有序的空隙以分层组织客体材料的纳米容器尤其有吸引力。沸石L是一种多孔的微尺寸晶体,具有大量严格的一维,平行排列的纳米通道。由于它们具有容纳各种不同客体分子并将其组装成特定构型的纳米容器的潜力,它们作为功能性纳米系统和微系统的构建模块非常有趣。例如,基于沸石L晶体,已经实现了微观偏振传感器和用于分级超分子组织的几种微晶体的链。在这里,我们证明了纳米容器的能力,特别是L型沸石晶体代表光学功能微系统基本组成的能力。我们表明,HOT在三个维度上操纵多种非球形微粒的能力可用于研究L型沸石纳米容器作为动态光波导。此外,我们实现了染料加载的沸石L作为附加元素,以感测这些具有高空间精度的新型波导和微球的引导特征,从而增强了进入沸石L波导的光耦合。通过使用纳米容器作为功能性光学系统的量身定制的构建块的这种精心设计的方法,将乐高式样的光学元件砌成砖的新时代变得可行。

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