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Water Soluble Self-Aggregates Induced Green Emission of Biocompatible Citric Acid-PEG Hyper Branched Polymer

机译:水溶性自聚集体诱导生物相容性柠檬酸-PEG超支化聚合物的绿色排放

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摘要

An aliphatic citric acid–PEG hyper-branched polymer (CPHP) with a π-bond on the polymer backbone was synthesized by a single- step melt reaction in which the polymerization and π-bond formation occur simultaneously. The chemical structure of CPHP was confirmed by FTIR, 1H-NMR, 13C-NMR and MALDI-TOF mass spectral analyses. Aggregates are generally found to disperse in any solvent but the CPHP aggregates were soluble in water due to their hybrid nature. The π-bond in the aconitate unit induces green emission by CH/π interaction while the PEG unit of CPHP increases its solubility in water. The soluble aggregates induced green emission (SAIE) of the CPHP was investigated by UV-Visible absorption and emission spectra, time- correlated single photon counting (TCSPC) and zeta potential measurements. The fluorescence life time (τf) increased from 4.93 to11.38 ns with an increase in CPHP concentration. The fluorescence quantum yield (Φf) of CPHP can be altered by varying the concentration of CPHP.
机译:通过一步熔融反应合成了在聚合物主链上具有π键的脂肪族柠檬酸-PEG超支化聚合物(CPHP),其中聚合和π键的形成同时发生。 FTIR, 1 H-NMR, 13 C-NMR和MALDI-TOF质谱分析证实了CPHP的化学结构。通常发现聚集体可分散在任何溶剂中,但是CPHP聚集体由于其杂化性质而可溶于水。乌头酸单元中的π键通过CH /π相互作用诱导绿色发射,而CPHP的PEG单元增加其在水中的溶解度。通过紫外可见吸收和发射光谱,时间相关的单光子计数(TCSPC)和ζ电位测量研究了CPHP的可溶性聚集体诱导的绿色发射(SAIE)。随着CPHP浓度的增加,荧光寿命(τf)从4.93增加到11.38 ns。可以通过改变CPHP的浓度来改变CPHP的荧光量子产率(Φf)。

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