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温敏树枝状聚乙二醇

Thermoresponsive dendritic oligoethylene glycols.

机构信息

International Joint Laboratory of Biomimetic & Smart Polymers, School of Materials Science and Engineering, Shanghai University, Nanchen Street 333, Shanghai 200444, China.

出版信息

Phys Chem Chem Phys. 2022 May 18;24(19):11848-11855. doi: 10.1039/d2cp01286c.

Abstract

Monodispersed molecules of low molar masses showing thermoresponsiveness are appealing both for mechanism investigation of the thermally-modulated dehydration and aggregation on molecular levels and for designing functional intelligent materials. In the present report, thermoresponsive properties of a homologous series of monodispersed dendritic macromolecules carrying three-, four- or six-fold dendritic oligoethylene glycol (OEG) segments were investigated. These dendritic macromolecules carry either methoxyl or ethoxyl terminals, and have different cores (alcohol, methyl ester or methacryloyl) to exhibit different overall hydrophilicity. They show characteristic thermoresponsive properties with sharp phase transitions when suitable structural units are combined. Three structural factors determine their phase transition temperatures, including the cores, branching density and peripheral terminals. Thermally-induced collapse and aggregation are monitored with temperature-varied NMR spectroscopy at the microscale level and optical microscopy at the macroscale level. At elevated temperature, these dendritic macromolecules undergo fast exchange between the dehydrated and the hydrated states. These dendritic macromolecules afford structure-dependent confinement to guest dyes through their multi-valent interactions.

摘要

具有低摩尔质量的单分散分子表现出温度响应性,这对于在分子水平上研究热调节脱水和聚集的机制以及设计功能智能材料都很有吸引力。在本报告中,研究了一系列具有三、四或六倍树枝状低聚乙二醇(OEG)段的单分散树枝状大分子的温度响应特性。这些树枝状大分子带有甲氧基或乙氧基末端,并且具有不同的核(醇、甲酯或甲基丙烯酰基),以表现出不同的整体亲水性。当结合合适的结构单元时,它们表现出特征性的温度响应特性,具有明显的相转变。三个结构因素决定了它们的相变温度,包括核、支化密度和外围末端。在微尺度上通过温度变化的 NMR 光谱和宏观尺度上的光学显微镜监测热诱导的坍塌和聚集。在升高的温度下,这些树枝状大分子在脱水和水合状态之间快速交换。这些树枝状大分子通过多价相互作用为客体染料提供结构依赖性的限制。

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