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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Optical properties of colloidal photonic crystals confined in rectangular microchannels
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Optical properties of colloidal photonic crystals confined in rectangular microchannels

机译:限制在矩形微通道中的胶体光子晶体的光学性质

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Herein we report experimental and theoretical analysis of the optical properties of planarized self-assembled colloidal photonic crystals confined within rectangular microchannels. A detailed mapping of the optical features, performed by microspectroscopy, is presented, providing evidence that spherical colloids confined in microchannels crystallize as single-domain colloidal crystal several hundreds of microns long with a very low concentration of intrinsic defects. A study of defective colloidal crystals is also made to illustrate this point. The effect of the different parameters affecting the reflection properties of these structures, such as crystal size, orientation, and nature of the substrate, is also analyzed. We show that the well-defined geometry and dimensions of the channels serve to template colloidal crystals with precise size, shape, and orientation, which imply accurate control of their photonic crystal properties. [References: 33]
机译:在这里,我们报告实验和理论分析的矩形微通道内的平面化自组装胶体光子晶体的光学性质。呈现了通过显微光谱学进行的光学特征的详细映射,从而提供了证据,即限制在微通道中的球形胶体结晶为几百微米长的单畴胶体晶体,具有非常低的固有缺陷浓度。还对有缺陷的胶体晶体进行了研究以说明这一点。还分析了不同参数对这些结构的反射特性(如晶体尺寸,取向和基板性质)的影响。我们表明,通道的明确定义的几何形状和尺寸可用于模板化具有精确尺寸,形状和方向的胶体晶体,这暗示着对其光子晶体特性的精确控制。 [参考:33]

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