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Towards sustainable polymeric nano-carriers and surfactants: facile low temperature enzymatic synthesis of bio-based amphiphilic copolymers in scCO2

机译:迈向可持续的聚合物纳米载体和表面活性剂:scCO2中生物基两亲共聚物的简便低温酶促合成

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摘要

We demonstrate that useful bio-based amphiphilic polymers can be produced enzymatically at a mild temperature, in a solvent-free system and using renewably sourced monomers, by exploiting the unique properties of supercritical CO2 (scCO2). We present the use of a novel near-ambient temperature approach to prepare renewable amphiphilic ABA copolymers in scCO2. Bio-based commercially available monomers have been polymerised to prepare chains with targeted molecular weight. The amphiphilic materials were prepared by end-capping the synthesised polymers with methoxy poly(ethylene glycol) (MPEG) chains in a one-pot high pressure reaction utilising Candida Antarctica Lipase B (CaLB) as a catalyst at a temperature as low as 35 °C. The block copolymers are characterised by 1H-NMR, GPC and DSC in order to carefully assess their structural and thermal properties. These polymers form self-assembled aggregates in aqueous environment and these nanostructures are studied through DLS, TEM and UV-Vis. Highly hydrophobic Coumarin-6 was used as a model to prove dispersion in water of lipophilic molecules. Maximum bubble pressure tests demonstrate the reduction in surface tension of these polymers and comparisons are made directly to commercial polymeric non-ionic surfactants.
机译:我们证明了有用的基于生物的两亲聚合物可以在温和的温度,无溶剂的系统中,通过利用超临界CO2(scCO2)的独特特性,以酶促方式生产,并使用可再生来源的单体。我们目前使用一种新型的接近环境温度的方法来制备scCO2中的可再生两亲ABA共聚物。已将基于生物的市售单体聚合以制备具有目标分子量的链。通过在低至35°C的温度下使用Candida Antarctica Lipase B(CaLB)作为催化剂,在一锅高压反应中用甲氧基聚(乙二醇)(MPEG)链对合成的聚合物进行封端制备两亲材料。 C。嵌段共聚物通过1 H-NMR,GPC和DSC进行表征,以便仔细评估其结构和热性能。这些聚合物在水性环境中形成自组装聚集体,并通过DLS,TEM和UV-Vis研究了这些纳米结构。使用高度疏水的香豆素-6作为模型来证明亲脂性分子在水中的分散性。最大气泡压力测试表明这些聚合物的表面张力降低,并且直接与市售的聚合物非离子表面活性剂进行比较。

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