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首页> 外文期刊>Bulletin of the Korean Chemical Society >Study of Anisotropic Photoluminescence and Energy Transfer in Oriented Dye-incorporating Zeolite-L Monolayer
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Study of Anisotropic Photoluminescence and Energy Transfer in Oriented Dye-incorporating Zeolite-L Monolayer

机译:取向染料掺入沸石L单分子膜的各向异性光致发光和能量转移研究

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摘要

Development of the methods to organize zeolite microcrystals into closely packed and uniformly aligned monolayers on various substrates have been pursued viewing microparticles as a novel class of building blocks. We now report that the vertically aligned zeolite monolayer can be applied as novel supramolecularly organized systems for anisotropic photoluminescence in high dichroic ratio, to study energy transfer dynamics between the internal and external fluorophores, and to develop zeolite-based advanced materials. Study of polarized fluorescence spectroscopy and angle-dependent intensity change with dye molecules in different surroundings further provides insight into molecular interactions that can be used for the future design of optoelectronic device in nanometer size. In addition, this report shows that isolating of organic dye through surface treatment is crucial for preventing the egress of the incorporated dye molecules from the channels of zeolite to the solution and to enhance the anisotropic luminescence.
机译:人们已经寻求开发将沸石微晶体组织成在各种基材上紧密堆积且均匀排列的单层膜的方法,并将微粒视为一种新型的构建基块。我们现在报道,垂直排列的沸石单分子层可用作高二向色比的各向异性光致发光的新型超分子组织系统,以研究内部和外部荧光团之间的能量转移动力学,并开发出基于沸石的先进材料。对偏振荧光光谱法和在不同环境中染料分子随角度变化的强度变化的研究进一步提供了分子相互作用的见解,这些相互作用可用于未来的纳米尺寸的光电器件设计。另外,该报告表明,通过表面处理分离有机染料对于防止掺入的染料分子从沸石通道向溶液中流出并增强各向异性发光至关重要。

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