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Tunable Defects in Colloidal Photonic Crystals

机译:胶体光子晶体中的可调缺陷

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We present a bottom-up approach for the construction of tunable functional defects in colloidal photonic crystals (CPCs). These structures incorporate polyelectrolyte multilayer (PEM) planar defects embedded in silica CPCs through a combination of evaporation induced self-assembly and microcontact transfer printing. We show how the enormous chemical diversity inherent to PEMs can be harnessed to create chemically active defect structures responsive to solvent vapor pressures, light, temperature as well as redox cycling. A sharp transmission state within the photonic stopband, induced by the PEM defect, can be precisely, reproducibly and in some cases reversibly tuned by these external stimuli. These materials could find numerous applications as optically monitored chemical sensors, adjustable notch filters and CPC-based tunable laser sources.
机译:我们提出了一种自下而上的方法来构造胶体光子晶体(CPC)中的可调功能缺陷。这些结构通过蒸发诱导的自组装和微接触转移印刷相结合,在二氧化硅CPC中嵌入了聚电解质多层(PEM)平面缺陷。我们展示了如何利用PEM固有的巨大化学多样性来响应溶剂蒸气压,光,温度以及氧化还原循环而创建具有化学活性的缺陷结构。由PEM缺陷引起的光子阻带内的陡峭传输状态可以通过这些外部刺激进行精确,可复制且在某些情况下可逆地调整。这些材料可作为光学监测化学传感器,可调陷波滤波器和基于CPC的可调谐激光源等多种应用。

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