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Aggregation-Induced Emission Materials with Narrowed Emission Band by Light-Harvesting Strategy: Fluorescence and Chemiluminescence Imaging

机译:通过光收集策略具有窄发射带的聚集诱导的发射材料:荧光和化学发光成像

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Aggregation-induced emission luminogens (AlEgens) have attracted increasing attention in recent years on account of their attribute of overcoming the aggregation-caused quenching (ACQ) phenomenon of conventional organic fluorophores. Despite their remarkable advantages and great developments, most organic AlEgens exhibit broad emission spectra with the full width at half-maxima (FWHM) over 100 nm, which is to the disadvantage of their practical applications. Herein, supramolecular polymeric AIE materials with brighter fluorescence and narrower emission band (higher color purity) than conventional AlEgens were developed by taking advantage of the light-harvesting strategy. These AIE materials, including nanoparticles, microfibers, and thin films, were fabricated from supramolecular polymers comprising quadruple hydrogen-bonded monomer tetraphenylethylene (TPE) and borondipyrromethene (BODIPY) as antenna chromophores and as energy acceptors, respectively. The excitation energy collected by TPE molecules was efficiently transferred to the BODIPY, resulting in up to 6 fold enhanced fluorescence intensity and narrowed emission band with FWHM decreasing from 148 to 32 nm. The resulting nanoparticles showed similar to 5-fold higher brightness than commercial quantum dots. The highly fluorescent nanoparticles were successfully applied for in vitro and in vivo fluorescence and chemiluminescence imaging, showing superior imaging performance to conventional AIE nanoparticles.
机译:近年来,近年来克服了常规有机荧光团的聚集导致淬火(ACQ)现象的属性,近年来近年来引起了越来越多的关注。尽管有了显着的优点和巨大的发展,但大多数有机患者呈现出广阔的发射光谱,在100nm以上的半最大值(FWHM)的全宽度上具有全宽,这是其实际应用的缺点。这里,通过利用光捕获策略,开发了与常规血液更亮的荧光和较窄发射带(更高色纯度)的超分子聚合物AIE材料。这些AIE材料,包括纳米颗粒,微纤维和薄膜,由包含四重氢键合单体四苯基(TPE)和硼烷哌啶(BODIPY)作为天线发色团的超分子聚合物制成,作为能量受体。通过TPE分子收集的激发能量被有效地转移到BOBIPY中,导致高达6倍的增强荧光强度和变窄的发射带,其FWHM从148至32nm降低。得到的纳米颗粒显示出与商业量子点相似的5倍较高的亮度。高荧光纳米颗粒成功地应用于体外和体内荧光和化学发光成像,对常规AIE纳米颗粒表示优异的成像性能。

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