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首页> 外文期刊>Chemistry: A European journal >Amphiphilic Metallopolymers for Photoswitchable Supramolecular Hydrogels
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Amphiphilic Metallopolymers for Photoswitchable Supramolecular Hydrogels

机译:用于光可切换超分子水凝胶的两亲金属聚合物

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摘要

A series of amphiphilic metallopolymers is described that features zinc(II) bis-terpyridine coordination nodes as well as a backbone with hydrophobic azoaryl moieties and hydrophilic phenylene-ethynylene units decorated with PEG brushes. Using such metallopolymers at very low concentration, stable, photo-responsive and self-healing hydrogels are obtained. UV irradiation of the gel allows modulation of the degree of hydrophobic pi-pi interactions between photoisomerizable azoaryl units and a polarity switch that overall induces a fast gel-to-sol transition. Finally, the material phase can be readily and fully restored to the thermodynamically stable state either thermally or photochemically by using visible light. The presented strategy can be further generalized towards modular supramolecular metallopolymers for injectable gels in drug delivery and bio-engineering applications.
机译:描述了一系列两亲金属聚合物,其特征在于锌(II)双-吡啶吡啶配位节点以及具有疏水性偶氮芳基部分和用PEG刷装饰的亲水性亚苯基-乙炔基单元的主链。使用非常低浓度的此类金属聚合物,可获得稳定,光响应和自修复的水凝胶。凝胶的紫外线照射可调节可光异构的偶氮芳基单元与极性开关之间的疏水性pi-pi相互作用的程度,该极性开关总体上引起凝胶到溶胶的快速转变。最后,通过使用可见光,材料相可以通过热或光化学方法容易且完全地恢复到热力学稳定状态。所提出的策略可以进一步推广到用于药物输送和生物工程应用中的可注射凝胶的模块化超分子金属聚合物。

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