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首页> 外文期刊>Angewandte Chemie >Versatile Synthetic Strategy for Coating Upconverting Nanoparticles with Polymer Shells through Localized Photopolymerization by Using the Particles as Internal Light Sources
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Versatile Synthetic Strategy for Coating Upconverting Nanoparticles with Polymer Shells through Localized Photopolymerization by Using the Particles as Internal Light Sources

机译:通过使用粒子作为内部光源通过局部光聚合,用聚合物壳包覆上转换纳米粒子的多功能合成策略

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摘要

We present a straightforward and generic strategy for coating upconverting nanoparticles (UCPs) with polymer shells for their protection, functionalization, conjugation, and for biocompatibility. UCPs are attracting much attention for their potential use as fluorescent labels in biological applications. However, they are hydrophobic and non-compatible with aqueous media; thus prior surface modification is essential. Our method uses the internal UV or visible light emitted from UCPs upon photoexcitation with near-infrared radiation, to locally photopolymerize a thin polymer shell around the UCPs. In this way, a large variety of monomers with different chemical functionalities can be incorporated. If required, a second, layer can be added on top of the first. Our method can provide a large spectrum of surface functional groups rapidly and in one pot, hence offering a platform for the preparation of libraries of functional polymer-encapsulated UCPs for applications in bioassays, biosensing, optical imaging, and theranostics.
机译:我们提出了一个简单而通用的策略,即使用聚合物壳包覆上转换纳米粒子(UCP),以保护,功能化,结合和生物相容性。 UCP由于其在生物应用中作为荧光标记的潜在用途而备受关注。然而,它们是疏水的并且与水性介质不相容。因此,事先进行表面改性至关重要。我们的方法使用UCP的内部UV或在近红外辐射光激发下从UCP发出的可见光来使UCP周围的薄聚合物壳局部光聚合。这样,可以掺入具有不同化学官能度的多种单体。如果需要,可以在第一层之上添加第二层。我们的方法可在一锅中快速提供大量的表面官能团,因此为制备功能性聚合物封装的UCP库提供了平台,可用于生物测定,生物传感,光学成像和诊​​断学。

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