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生物基聚合物乳化剂在桃金娘烯和苯乙烯的微乳液共聚中的应用:作为 Pickering 乳液稳定剂的生物基水性乳胶。

Biosourced Polymeric Emulsifiers for Miniemulsion Copolymerization of Myrcene and Styrene: Toward Biobased Waterborne Latex as Pickering Emulsion Stabilizer.

机构信息

Universite de Pau et des Pays de l'Adour, E2S UPPA, CNRS, IPREM, 64000 Pau, France.

CRPP, UMR 5031, Univ. Bordeaux, CNRS, 33600 Pessac, France.

出版信息

Biomacromolecules. 2022 Jun 13;23(6):2536-2551. doi: 10.1021/acs.biomac.2c00257. Epub 2022 May 31.

Abstract

Biobased waterborne latexes were synthesized by miniemulsion radical copolymerization of a biosourced β-myrcene (My) terpenic monomer and styrene (S). Biobased amphiphilic copolymers were designed to act as stabilizers of the initial monomer droplets and the polymer colloids dispersed in the water phase. Two types of hydrophilic polymer backbones were hydrophobically modified by terpene molecules to synthesize two series of amphiphilic copolymers with various degrees of substitution. The first series consists of poly(acrylic acid) modified with tetrahydrogeraniol moieties (PAA--THG) and the second series is based on the polysaccharide carboxymethylpullulan amino-functionalized with dihydromyrcenol moieties (CMP--(NH-DHM)). The produced waterborne latexes with diameters between 160 and 300 nm and were composed of polymers with varying glass transition temperatures ( = -60 °C, = -14 °C, = 105 °C) depending on the molar fraction of biobased β-myrcene (,0 = 0, 0.43, or 1). The latexes successfully stabilized dodecane-in-water and water-in-dodecane emulsions for months at all compositions. The waterborne latexes composed of low poly(β-myrcene) caused interesting different behavior during drying of the emulsions compared to polystyrene latexes.

摘要

生物基水性乳液通过生物源β-蒎烯(My)萜烯单体和苯乙烯(S)的细乳液自由基共聚合成。设计生物基两亲共聚物作为初始单体液滴和分散在水相中的聚合物胶体的稳定剂。两种类型的亲水聚合物主链通过萜烯分子进行疏水改性,以合成具有不同取代度的两系列两亲共聚物。第一系列由四氢香叶醇部分改性的聚丙烯酸(PAA--THG)组成,第二系列基于二氢月桂烯醇部分官能化的多糖羧甲基普鲁兰(CMP--(NH-DHM))。所制备的水性乳液粒径在 160 至 300nm 之间,由具有不同玻璃化转变温度的聚合物组成( = -60°C、 = -14°C、 = 105°C),具体取决于生物基β-蒎烯的摩尔分数(,0 = 0、0.43 或 1)。在所有组成下,乳液都能成功稳定月桂烷在水中和水在月桂烷中的乳液数月。与聚苯乙烯乳液相比,由低聚(β-蒎烯)组成的水性乳液在乳液干燥过程中表现出有趣的不同行为。

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