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Photonic Crystals for Energy Transfer Experiments

机译:用于能量转移实验的光子晶体

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Incorporation of two dyes into polystyrene beads was achieved through a core ― shell emulsion free polymerization. The beads consisted of a central core, a dye containing emissive layer, and an overcoat layer. The overcoat layer thickness determined the final size of the nanospheres. The nanospheres were monodisperse and spherical. The nanospheres were used to assemble two photonic crystals. One in which the stop band overlapped with the dye emission of the donor dye, and one which had no overlap. The crystals formed were characterized by photoluminescence and reflectance studies. The crystal's emission was suppressed where the stop band overlapped the emission. This suppression shows the expected angular dependence and contributes to changes in the efficiency of energy transfer from Coumarin 334 to Nile Red. Suppression of emission and energy transfer impart an angular dependence of the color of emission to the crystal. This results in a material that is tunable with angle of both its reflectivity and its emission.
机译:通过无核-壳乳液聚合,可将两种染料掺入聚苯乙烯珠粒中。珠粒由中心核,含染料的发光层和保护层组成。外涂层的厚度决定了纳米球的最终尺寸。纳米球是单分散的和球形的。纳米球用于组装两个光子晶体。阻带与供体染料的染料发射重叠的一种,而无重叠。通过光致发光和反射率研究来表征形成的晶体。阻带与发射重叠的位置抑制了晶体的发射。这种抑制显示了预期的角度依赖性,并有助于改变从香豆素334到尼罗河红的能量转移效率。发射和能量转移的抑制使发射的颜色与晶体成角度关系。这导致材料的反射率和发射角均可调。

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