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聚酸纳米凝胶的合成:用于功能化和荧光水凝胶组装的 pH 响应亚 100nm 颗粒。

Synthesis of polyacid nanogels: pH-responsive sub-100 nm particles for functionalisation and fluorescent hydrogel assembly.

机构信息

School of Materials, University of Manchester, Manchester, M13 9PL, UK.

Department of Chemistry, The University of Sheffield, Dainton Building, Brook Hill, Sheffield, South Yorkshire S3 7HF, UK.

出版信息

Soft Matter. 2017 Feb 22;13(8):1554-1560. doi: 10.1039/c6sm02713j.

Abstract

Nanogels are crosslinked polymer particles with a swollen size between 1 and 100 nm. They are of major interest for advanced surface coatings, drug delivery, diagnostics and biomaterials. Synthesising polyacid nanogels that show triggered swelling using a scalable approach is a key objective of polymer colloid chemistry. Inspired by the ability of polar surfaces to enhance nanoparticle stabilisation, we report the first examples of pH-responsive polyacid nanogels containing high -COOH contents prepared by a simple, scalable, aqueous method. To demonstrate their functionalisation potential, glycidyl methacrylate was reacted with the -COOH chemical handles and the nanogels were converted to macro-crosslinkers. The concentrated (functionalised) nanogel dispersions retained their pH-responsiveness, were shear-thinning and formed physical gels at pH 7.4. The nanogels were covalently interlinked via free-radical coupling at 37 °C to form transparent, ductile, hydrogels. Mixing of the functionalised nanogels with polymer dots enabled covalent assembly of fluorescent hydrogels.

摘要

纳米凝胶是交联聚合物粒子,溶胀尺寸在 1 到 100nm 之间。它们在高级表面涂层、药物输送、诊断和生物材料方面有重要的应用。使用可扩展的方法合成具有触发溶胀性能的聚酸纳米凝胶是聚合物胶体化学的主要目标。受极性表面增强纳米颗粒稳定性能力的启发,我们首次报道了含有高 -COOH 含量的 pH 响应性聚酸纳米凝胶的例子,这些纳米凝胶是通过简单、可扩展的水相方法制备的。为了展示它们的功能化潜力,我们将甲基丙烯酸缩水甘油酯与 -COOH 化学基团反应,将纳米凝胶转化为大的交联剂。在 pH 值为 7.4 时,浓缩(功能化)纳米凝胶分散体保留了其对 pH 的响应性,具有剪切变稀的性质,并形成物理凝胶。纳米凝胶在 37°C 下通过自由基偶联进行共价交联,形成透明、柔韧的水凝胶。将功能化的纳米凝胶与聚合物点混合,能够进行荧光水凝胶的共价组装。

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