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Temperature and chemical environment effects on the aggregation extent of water soluble perylene dye into vinyl alcohol-containing polymers

机译:温度和化学环境对水溶性per染料在含乙烯醇聚合物中聚集程度的影响

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摘要

In this work, a water soluble perylene derivative containing piperazine peripheral units, i.e. N,N'-bis(2-(1-piperazino)ethyl)-3,4,9,10-perylenetetracarboxylic acid diimide dichloride (PZPER) was synthesized and dispersed at low loadings (from 0.1 to 1.1 wt%) into vinyl alcohol-containing polymer matrices. From the data acquired, the most effective driving force for the formation of intramolecular aggregates of PZPER was attributed to hydrogen bonding interactions. In particular, the aggregation extent was affected by the reduction of molecular interactions occurring in both solution and in polymer dispersions due to the decreasing polarity of the chromophore environment or increasing temperature. The sensitivity of PZPER aggregates dispersed into vinyl alcohol-containing polymer matrices towards mechanical stress was also reported. The responsiveness of PZPER optical properties (both in absorption and in emission) versus thermal or mechanical solicitations suggests applications of polymer dispersions as smart indicators to external stimuli.
机译:在这项工作中,合成了包含哌嗪外围单元即N,N'-双(2-(1-哌嗪子基)乙基)-3,4,9,10-per四甲酸二酰亚胺二氯化物(PZPER)的水溶性per衍生物。以低负载量(0.1至1.1重量%)分散到含乙烯醇的聚合物基质中。从获得的数据来看,形成PZPER分子内聚集体的最有效驱动力归因于氢键相互作用。特别地,由于发色团环境极性的降低或温度的升高,聚集程度受到溶液和聚合物分散体中发生的分子相互作用的减少的影响。还报道了分散在含乙烯醇的聚合物基质中的PZPER聚集体对机械应力的敏感性。 PZPER光学特性(吸收和发射方面)与热或机械吸引的响应性表明,聚合物分散体可作为外部刺激的智能指示剂。

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