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Emission properties of dye-doped cationic nanoparticles: Size, surfactant and monomeric composition effects

机译:染料掺杂阳离子纳米粒子的发射特性:尺寸,表面活性剂和单体组成的影响

摘要

© The Royal Society of Chemistry 2015. Cationic nanoparticles (NPs) demonstrate advantages over similar anionic systems in relevant applications such as nanocarriers and biomarkers. To harness their unique properties and full potential in bioimaging, a clear understanding of the factors controlling the emission performance of dye-doped cationic NPs, especially under drastic pumping conditions such as those involved in high-resolution microscopy, is required. Herein, we present, for the first time, a comprehensive analysis of the photophysical and laser properties of Rhodamine 6G (Rh6G) doped cationic NPs in colloidal suspensions and self-assembled monoliths. Composition and morphological parameters such as dye content, weigh proportion of NPs in the solution, NPs size, dielectric constant of the surrounding medium, monomeric composition, and surfactant structure, have been mapped. The fluorescence capacity of Rh6G is mainly ruled by the size of the NP, as well as by its monomer and surfactant composition. The laser properties are more sensitive to compositional changes, since laser efficiencies ranging from 50% to 0% (no lasing) are measured. Hence, a most careful selection of monomers and surfactants must be carried out in order to boost their emission and photonic properties.
机译:©皇家化学学会,2015年。在相关应用(例如纳米载体和生物标记)中,阳离子纳米粒子(NPs)展示了优于类似阴离子系统的优势。为了利用其独特的特性和在生物成像中的全部潜力,需要清楚地了解控制染料掺杂阳离子NPs发射性能的因素,尤其是在剧烈泵浦条件下,例如高分辨率显微镜所涉及的条件。在此,我们首次提出了对胶体悬浮液和自组装整体中罗丹明6G(Rh6G)掺杂的阳离子NP的光物理和激光性质的综合分析。绘制了成分和形态参数,例如染料含量,溶液中NP的重量比例,NP大小,周围介质的介电常数,单体组成和表面活性剂结构。 Rh6G的荧光能力主要取决于NP的大小,以及其单体和表面活性剂的组成。激光特性对成分变化更为敏感,因为测量的激光效率范围为50%至0%(无激光)。因此,必须对单体和表面活性剂进行最仔细的选择,以增强其发射和光子性能。

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