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首页> 外文期刊>Journal of Crystal Growth >Spatial control of organic nanocrystal nucleation in sol-gel thin films for 3-D optical data storage devices or chemical multi-sensors
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Spatial control of organic nanocrystal nucleation in sol-gel thin films for 3-D optical data storage devices or chemical multi-sensors

机译:用于3-D光学数据存储设备或化学多传感器的溶胶-凝胶薄膜中有机纳米晶体成核的空间控制

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摘要

We have controlled the spatial distribution of organic nanocrystals grown in sol-gel thin films prepared by spin-coating. This spatial control of nucleation is carried out through the difference in confinement between the surface and the depth of the sol-gel thin films at the first stage of the coating process. Thus, we can direct the nucleation sites in grooves or wells of textured substrates. We have achieved, respectively 1- and 2-D ordering of nanocrystals while 3-D patterns have been obtained through a multi-layer process. This nucleation control gives an opportunity to design new 3-D optical data storage or 2-D arrays of luminescent crystals for chemical or biological multi-sensors. (c) 2005 Elsevier B.V. All rights reserved.
机译:我们已经控制了通过旋涂制备的溶胶-凝胶薄膜中生长的有机纳米晶体的空间分布。成核的这种空间控制是通过在涂覆过程的第一阶段在表面和溶胶-凝胶薄膜深度之间的限制差异来进行的。因此,我们可以将成核位置引导到带纹理的基材的凹槽或孔中。我们已经分别实现了纳米晶体的一维和二维排序,同时通过多层工艺获得了3-D图案。这种成核控制为有机化学或生物多传感器设计新的3D光学数据存储或2D发光晶体阵列提供了机会。 (c)2005 Elsevier B.V.保留所有权利。

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