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Polyelectrolyte-Assisted Formation of Molecular Nanoparticles Exhibiting Strongly Enhanced Fluorescence

机译:聚电解质辅助分子纳米粒子形成强烈增强荧光的形成。

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摘要

A polyelectrolyte-assisted reprecipitation method is developed to fabricate nanoparticles of highly soluble molecules. The approach is demonstrated by using a zwitterionic diaminodicyanoquinodimethane molecule bearing remote ammonium functionalities with high solubility in water as well as organic solvents. Nanoparticles are prepared by injecting aqueous solutions of this compound containing an optimum concentration of sodium poly(styrenesulfonate) into methanol. The strong fluorescence exhibited by the compound in the aggregated state is reflected in the enhanced fluorescence of the polyelectrolyte complex in water. The nanoparticles formed in the colloidal state manifest even stronger fluorescence, which leads to an overall enhancement by about 90 times relative to aqueous solutions of the pure compound. The conditions for achieving the emission enhancement are optimized and a model for the molecular-level interactions and aggregation effects is developed through a range of spectroscopy, microscopy, and calorimetry investigations and control experiments.
机译:开发了一种聚电解质辅助的再沉淀方法来制备高可溶性分子的纳米颗粒。通过使用具有远程铵官能团的两性离子二氨基二氰基喹啉二甲烷分子证明了该方法,该分子具有在水以及有机溶剂中的高溶解度。通过将含有最佳浓度的聚(苯乙烯磺酸钠)的这种化合物的水溶液注入甲醇中来制备纳米颗粒。该化合物以聚集状态显示的强荧光反映在水中的聚电解质复合物的增强的荧光中。以胶体状态形成的纳米颗粒表现出甚至更强的荧光,这导致相对于纯化合物的水溶液整体增强约90倍。通过一系列光谱学,显微镜学,量热法研究和对照实验,优化了实现排放增强的条件,并开发了分子水平相互作用和聚集效应的模型。

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