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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Manipulation of dual fluorescence behavior in aggregation-induced emission enhancement of a tetraphenylethene-appended polymer by optical tweezers
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Manipulation of dual fluorescence behavior in aggregation-induced emission enhancement of a tetraphenylethene-appended polymer by optical tweezers

机译:通过光学镊子操纵聚集诱导的聚集诱导的排放增强促进四苯基乙烯 - 附加聚合物的荧光行为

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摘要

The manipulation of dual fluorescence behavior in aggregation-induced emission enhancement (AIEE) of a tetraphenylethene (TPE)-appended polymer by optical tweezers was investigated herein. Optical tweezers using a focused near-infrared continuous-wave laser resulted in the generation of a single micrometer-sized aggregate consisting of polymers at the laser focus. After a few minutes, AIEE was activated, and green fluorescence emission was observed at 530 nm. Continuous irradiation into the aggregate led to the formation of a highly concentrated solution of polymers around the aggregate, the fluorescence of which changed from green to blue. The blue solution exhibited two fluorescence emissions at 457 and 530 nm, and their intensity depended on the distance from the laser focus. The two fluorescence ratios could be arbitrarily regulated by tuning the laser power, indicating that optical tweezers could enable arbitrary control of the fluorescence position. Optical tweezers controlled the local environment around the fluorophore and provided various polymer associations, resulting in dual fluorescence emissions. The dynamics and mechanism of dual AIEE fluorescence by optical tweezers were examined in terms of polymer association and change in the fluorophore conformation depending on the laser power.
机译:本文研究了用光镊对添加四苯乙烯(TPE)的聚合物的聚集诱导发射增强(AIEE)中的双荧光行为的操纵。使用聚焦近红外连续波激光的光镊在激光焦点处产生了由聚合物组成的单个微米大小的聚集体。几分钟后,AIEE被激活,在530nm处观察到绿色荧光发射。连续照射到骨料中,导致骨料周围形成高浓度的聚合物溶液,其荧光从绿色变为蓝色。蓝色溶液在457和530 nm处显示出两种荧光发射,其强度取决于距激光焦点的距离。通过调节激光功率可以任意调节这两个荧光比率,这表明光镊可以实现荧光位置的任意控制。光镊控制荧光团周围的局部环境,并提供各种聚合物组合,从而产生双重荧光发射。通过聚合物缔合和荧光团构象随激光功率的变化,研究了光镊双AIEE荧光的动力学和机理。

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