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Light-induced crosslinkable semiconducting polymer dots

机译:光诱导的可交联半导体聚合物点

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This paper describes a synthetic approach for photocrosslinkable polyfluorene (pc-PFO) semiconducting polymer dots, and demonstrates their superior ability to crosslink and form 3-D intermolecular polymer networks. The crosslinked pc-PFO Pdots are equipped with excellent encapsulating ability of functional small molecules. Optimum conditions of light irradiation on pc-PFO Pdots were investigated and clarified by using polymer thin films as a model. By employing the optimal light irradiation conditions, we successfully crosslinked pc-PFO Pdots and studied their particle sizes, photophysical, and colloidal properties. Single-particle imaging and dynamic-light-scattering measurements were conducted to understand the behaviors of photocrosslinked Pdots. Our results indicate pc-PFO Pdots can be easily photocrosslinked and the crosslinked species have excellent colloidal stability, physical and chemical stability, fluorescence brightness, and specific binding properties for cellular labeling. Considering that optical stimulus can work remotely, cleanly, and non-invasively, this study should pave the way for a promising approach to further develop stimuli-responsive ultrabright and versatile Pdot probes for biomedical imaging.
机译:本文介绍了一种用于光胶片可重新链接多氟烯(PC-PFO)半导体聚合物点的合成方法,并证明了它们的交联和形成3-D分子间聚合物网络的优异能力。交联的PC-PFO PDOT配备有功能性小分子的优异的封装能力。通过使用聚合物薄膜作为模型,研究并澄清了PC-PFO PDOTs上的光照射的最佳条件。通过采用最佳的光照射条件,我们成功地交联PC-PFO PDOT,并研究了它们的粒度,光物理和胶体特性。进行单粒子成像和动态光散射测量以了解光关键的PDOT的行为。我们的结果表明PC-PFO PDOTS可以容易地光源,交联物种具有优异的胶体稳定性,物理和化学稳定性,荧光亮度和细胞标记的特异性结合性。考虑到光学刺激可以轻松地,干净地和非侵入性地工作,这项研究应该为有希望的方法铺平道路,以进一步开发刺激响应敏感的超级和多功能PDOT探针,用于生物医学成像。

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