二苯并吡啶并喹喔啉基纳米聚集体的红色热激活延迟荧光

Subhadeep Das, Subhankar Kundu, Bahadur Sk, Md. Sujahangir Kabir Sarkar, Abhijit Patra
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引用次数: 5

摘要

摘要全有机热激活延迟荧光(TADF)材料已成为光电子器件和生物医学应用的潜在候选者。然而,在较长波长区域具有强发射的有机TADF探针的开发(> 600 nm)仍然是一个挑战。用多个供体单元取代的强π共轭刚性受体核可以是获得红色TADF探针的可行设计策略。本文中,3,6-二叔丁基咔唑被二苯并吡啶并喹喔啉受体核取代,得到t形给体-受体-给体化合物PQACz-t,在聚合物嵌入薄膜中表现出红色TADF。此外,PQACz-T在THF-水混合物中自组装成不同尺寸和形状的分子纳米聚集体,即使在水性环境中也显示出明亮的红色发射和延迟的荧光。将PQACz-T的自组装和激发态性质与非烷基化类似物PQCz-T进行了比较。纳米聚集体中的延迟荧光归因于高的反向系统间交叉率。此外,在将PQACz-T封装在三嵌段共聚物F-127中时,制备了荧光纳米颗粒的较小尺寸、均匀分布的水性分散体。细胞相容性聚合物包封的PQACz-T纳米颗粒具有大的斯托克斯位移和优异的光稳定性,可用于HeLa细胞中脂滴的特异性成像。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Red Thermally Activated Delayed Fluorescence in Dibenzopyridoquinoxaline-Based Nanoaggregates

Red Thermally Activated Delayed Fluorescence in Dibenzopyridoquinoxaline-Based Nanoaggregates
Abstract All-organic thermally activated delayed fluorescence (TADF) materials have emerged as potential candidates for optoelectronic devices and biomedical applications. However, the development of organic TADF probes with strong emission in the longer wavelength region (> 600 nm) remains a challenge. Strong π-conjugated rigid acceptor cores substituted with multiple donor units can be a viable design strategy to obtain red TADF probes. Herein, 3,6-di-t-butyl carbazole substituted to a dibenzopyridoquinoxaline acceptor core resulted in a T-shaped donor–acceptor–donor compound, PQACz-T, exhibiting red TADF in polymer-embedded thin-films. Further, PQACz-T self-assembled to molecular nanoaggregates of diverse size and shape in THF–water mixture showing bright red emission along with delayed fluorescence even in an aqueous environment. The self-assembly and the excited-state properties of PQACz-T were compared with the nonalkylated analogue, PQCz-T. The delayed fluorescence in nanoaggregates was attributed to the high rate of reverse intersystem crossing. Moreover, an aqueous dispersion of the smaller-sized, homogeneous distribution of fluorescent nanoparticles was fabricated upon encapsulating PQACz-T in a triblock copolymer, F-127. Cytocompatible polymer-encapsulated PQACz-T nanoparticles with large Stokes shift and excellent photostability were demonstrated for the specific imaging of lipid droplets in HeLa cells.
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CiteScore
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