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Probing the Microenvironments in a Polymer-Wrapped Core–Shell Nanoassembly Using Pyrene Chromophores

机译:使用P发色团在聚合物包裹的核壳纳米组装体中探查微环境

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The local environments within an amphiphilic polymer shell wrapped around lanthanide-doped upconverting nanoparticles were probed using steady-state and time-resolved fluorescence spectroscopy techniques. Emission lifetime measurements of pyrene chromophores trapped within the polymer shell reveal that there are at least two environments, where the organic pyrene molecules are encapsulated in hydrophobic environments that have lower polarity than in water. The migration of pyrene chromophores from their initial location to another location was also observed, demonstrating that the polymeric shell provides both hydrophobicity and mobility for entrapped molecules. These results offer insight into what outcomes can be expected when chemical reactions are carried out in these nanoassemblies, especially if they are to be used as nanoreactors for synthesis or delivery vehicles for therapeutics.
机译:使用稳态和时间分辨荧光光谱技术探测包裹在镧系元素掺杂的上转换纳米粒子周围的两亲聚合物壳内的局部环境。 trap陷在聚合物壳中的pyr发色团的发射寿命测量结果表明,至少存在两种​​环境,其中有机pyr分子被包裹在极性比水低的疏水性环境中。还观察到of发色团从其初始位置向另一位置的迁移,表明聚合物壳为被包裹的分子提供疏水性和迁移性。这些结果提供了对在这些纳米组件中进行化学反应时可预期的结果的见解,特别是如果将它们用作合成的纳米反应器或用于治疗的载体时。

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