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Amplified energy transfer in conjugated polymer nanoparticle tags and sensors

机译:在共轭聚合物纳米颗粒标签和传感器中放大的能量转移

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摘要

Nanoparticles primarily consisting of π-conjugated polymers have emerged as extraordinarily bright fluorescent tags with potential applications in biological imaging and sensing. As fluorescent tags, conjugated polymer nanoparticles possess a number of advantageous properties, such as small particle size, extraordinary fluorescence brightness, excellent photostability, and high emission rate. Exciton diffusion occurring in the nanoparticles results in amplified energy transfer, doubling the energy transfer efficiency in some cases. Amplified energy transfer has been exploited to obtain highly red-shifted emission, oxygen-sensing nanoparticles, and fluorescence photoswitching. Additional observed phenomena are attributable to amplified energy transfer in conjugated polymers, including superquenching by metal nanoparticles, and fluorescence modulation by hole polarons. This feature article presents an overview of recent investigations of optical properties and energy transfer phenomena of this relatively novel type of fluorescent nanoparticle with a viewpoint towards demanding fluorescence-based imaging and sensing applications.
机译:主要由π共轭聚合物组成的纳米颗粒已成为非常明亮的荧光标签,并具有潜在的生物成像和感应中的应用。作为荧光标签,共轭聚合物纳米颗粒具有许多有利的特性,例如小粒径,非凡的荧光亮度,出色的光稳定性和高排放速率。发生在纳米颗粒中的激子扩散会导致能量转移,在某些情况下使能量转移效率加倍。扩增的能量转移已被利用以获得高变速的发射,氧气纳米颗粒和荧光照相。其他观察到的现象归因于共轭聚合物中的扩增能量转移,包括金属纳米颗粒的超分,以及孔极化物的荧光调节。本特征文章概述了对这种相对新型荧光纳米颗粒类型的光学性质和能量传递现象的最新研究,该研究的观点旨在要求基于荧光的成像和传感应用。

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