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Anomalous Fluorescence Enhancement from Double Heterostructure 3D Colloidal Photonic Crystals-A Multifunctional Fluorescence-Based Sensor Platform

机译:双异质结构三维胶体光子晶体的异常荧光增强 - 一种多功能荧光传感器平台

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摘要

Augmenting fluorescence intensity is of vital importance to the development of chemical and biochemical sensing, imaging and miniature light sources. Here we report an unprecedented fluorescence enhancement with a novel architecture of multilayer three-dimensional colloidal photonic crystals self-Assembled from polystyrene spheres. The new technique uses a double heterostructure, which comprises a top and a bottom layer with a periodicity overlapping the excitation wavelength (E) of the emitters, and a middle layer with a periodicity matching the fluorescence wavelength (F) and a thickness that supports constructive interference for the excitation wavelength. This E-F-E double heterostructure displays direction-dependent light trapping for both excitation and fluorescence, coupling the modes of photonic crystal with multiple-beam interference. The E-F-E double heterostructure renders an additional 5-fold enhancement to the extraordinary FL amplification of Rhodamine B in monolithic E CPhCs, and 4.3-fold acceleration of emission dynamics. Such a self-Assembled double heterostructue CPhCs may find significant applications in illumination, laser, chemical/biochemical sensing, and solar energy harvesting. We further demonstrate the multi-functionality of the E-F-E double heterostructure CPhCs in Hg (II) sensing.
机译:增强荧光强度对于化学和生物化学传感,成像和微型光源的发展至关重要。在这里,我们报道了一种前所未有的荧光增强作用,其具有从聚苯乙烯球体自行组装的多层三维胶体光子晶体的新型结构。新技术使用了双重异质结构,该结构包括顶层和底层,其周期性与发射体的激发波长(E)重叠,以及中间层,其周期性与荧光波长(F)相匹配,并且其厚度与构造相符。激发波长的干扰。这种E-F-E双重异质结构在激发和荧光方面显示出与方向相关的光陷阱,将光子晶体的模式与多光束干涉耦合在一起。 E-F-E双重异质结构使罗丹明B在单片E CPhC中的非凡FL扩增增加了5倍,发射动力学加速了4.3倍。这种自组装的双异质结构CPhC可能在照明,激光,化学/生物化学传感和太阳能收集中找到重要的应用。我们进一步证明了汞(II)传感中的E-F-E双异质结构CPhCs的多功能性。

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