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Confinement of pyridinium hemicyanine dye within an anionic metal-organic framework for two-photon-pumped lasing

机译:吡啶金属半菁染料在阴离子金属-有机骨架内的限制用于双光子泵浦激光

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摘要

Two-photon-pumped dye lasers are very important because of their applications in wavelength up-conversion, optical data storage, biological imaging and photodynamic therapy. Such lasers are very difficult to realize in the solid state because of the aggregation-caused quenching. Here we demonstrate a new two-photon-pumped micro-laser by encapsulating the cationic pyridinium hemicyanine dye into an anionic metal-organic framework (MOF). The resultant MOF⊃dye composite exhibits significant two-photon fluorescence because of the large absorption cross-section and the encapsulation-enhanced luminescent efficiency of the dye. Furthermore, the well-faceted MOF crystal serves as a natural Fabry–Perot resonance cavity, leading to lasing around 640 nm when pumped with a 1064-nm pulse laser. This strategy not only combines the crystalline benefit of MOFs and luminescent behaviour of organic dyes but also creates a new synergistic two-photon-pumped lasing functionality, opening a new avenue for the future creation of solid-state photonic materials and devices.
机译:双光子泵浦染料激光器非常重要,因为它们在波长上转换,光学数据存储,生物成像和光动力疗法中的应用。由于聚集引起的猝灭,很难以固态实现这种激光器。在这里,我们通过将阳离子吡啶鎓半花菁染料封装到阴离子金属有机骨架(MOF)中,展示了一种新型的两光子泵浦微激光器。由于大的吸收截面和染料的包封增强的发光效率,所得的MOF-染料复合物表现出显着的双光子荧光。此外,切面细致的MOF晶体可作为天然的Fabry-Perot共振腔,当用1064 nm脉冲激光泵浦时,可产生约640 nm的激光。该策略不仅结合了MOF的结晶优势和有机染料的发光性能,而且还创造了一种新的协同的双光子泵浦激光功能,为将来创建固态光子材料和器件开辟了一条新途径。

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