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Local polarity and microviscosity of the interior of dendritic polyethylene amphiphiles

机译:树突状聚乙烯两亲物内部的局部极性和微粘度

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摘要

From the temperature dependent steady-state and time-resolved fluorescence studies of coumarin 153 (C153) in dendritic polyethylene (DPE)- poly(oligo(ethylene gylcol) methacrylate) (POEGMA) unimolecular micelles, the polarity and microviscosity of the microenvironments of DPE-POEGMA were obtained. The analysis of the steady-state emission suggested that C153 sensed a more polar microenvironment in dendrimer polyethylene (dPE)-POEGMA than that in hyperbranched polyethylene (hPE)-POEGMA. It is found that the microviscosity around C153 in DPE-POEGMA micelle could be predicted from the measured reorientational time, which was observed to decrease with increasing temperature, and that local friction experienced by C153 in dPE-POEGMA decreases faster than in hPE-POEGMA with the increase of temperature, although both have similar local friction ranges.
机译:从香豆素153(C153)在树枝状聚乙烯(DPE)-聚(低聚(乙二醇)甲基丙烯酸甲酯)(POEGMA)单分子胶束中的温度依赖性稳态和时间分辨荧光研究中,DPE微环境的极性和微粘度获得-POEGMA。对稳态发射的分析表明,与高支化聚乙烯(hPE)-POEGMA中相比,C153在树枝状聚乙烯(dPE)-POEGMA中具有更强的极性微环境。结果发现,从测得的重新定向时间可以预测DPE-POEGMA胶束中C153周围的微粘度,该粘度随温度升高而降低,并且dPE-POEGMA中C153所经历的局部摩擦力比hPE-POEGMA中的C153快。温度升高,尽管两者都有相似的局部摩擦范围。

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