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Photoactivation of Aggregation-Induced Emission Moleculesfor Fast and Efficient Synthesis of Highly Fluorescent Single-ChainNanoparticles

机译:聚集诱导的发射分子的光活化用于快速高效合成高荧光单链纳米粒子

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摘要

Single-chain nanoparticles (SCNPs) are ultrasmall soft nanomaterials constructed via intrachain cross-linking of individual precursor polymer chains, with promising prospects for nanomedicine, catalysis, and sensing, among other different fields. SCNPs are versatile building blocks for the construction of new fluorescent probes with ultrasmall size, higher brightness, and better photostability than previous particle-based systems. Herein, we report on a new, fast, and efficient method to produce SCNPs with intense fluorescence emission in solution which is based on the photoactivation of appropriate aggregation-induced emission (AIE) cross-linking molecules containing azide functional groups. Remarkably, the presence of the azide moiety—that can be transformed to highly reactive nitrene species upon UV irradiation—was found to be essential for the SCNPs to display intense fluorescence emission. We attribute the fluorescence properties of the SCNPs to the immobilization of the initially nonfluorescent AIE molecules via intrachain cross-linking upon photoactivation. Such cross-linking-inducedimmobilization process activates the AIE mechanism and, hence, leadsto fluorescent SCNPs in both solution and solid state.
机译:单链纳米颗粒(SCNP)是通过单个前体聚合物链的链内交联而构建的超小型软纳米材料,在纳米医学,催化和传感等领域具有广阔的前景。 SCNP是用于构建新型荧光探针的通用构建块,与以前的基于粒子的系统相比,它们具有超小尺寸,更高的亮度和更好的光稳定性。本文中,我们报告了一种新的,快速而有效的方法,该方法可在溶液中产生具有强烈荧光发射的SCNP,该方法基于适当的包含叠氮化物官能团的聚集诱导发射(AIE)交联分子的光活化。值得注意的是,发现叠氮化物部分的存在(可在紫外线照射下转化为高反应性的氮物质)对于SCNP表现出强烈的荧光发射至关重要。我们将SCNPs的荧光特性归因于光活化时通过链内交联将最初的非荧光AIE分子固定化。这种交联引起的固定过程激活了AIE机制,因此导致在溶液状态和固态状态下都能发出荧光的SCNP。

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