Suppr超能文献

由氨基官能化聚二甲基硅氧烷与丙烯酸的氮杂迈克尔反应衍生而来的两性离子硅氧烷材料。

Zwitterionic Silicone Materials Derived from Aza-Michael Reaction of Amino-Functional PDMS with Acrylic Acid.

作者信息

Genest Aymeric, Portinha Daniel, Pouget Emmanuel, Lamnawar Khalid, Ganachaud Francois, Fleury Etienne

机构信息

Université de Lyon, CNRS, UMR 5223, INSA-Lyon, IMP@INSA, Villeurbanne, F-69621, France.

Elkem Silicones France, 55 Rue des Frères Perret, BP 22, Saint-Fons Cedex, F-69191, France.

出版信息

Macromol Rapid Commun. 2021 Mar;42(5):e2000372. doi: 10.1002/marc.202000372. Epub 2020 Nov 16.

Abstract

Supramolecular zwitterionic silicones are synthesized by aza-Michael reaction between acrylic acid and amine-functional polydimethylsiloxanes. The in-depth characterization of this chemistry, applied for the first time to silicones, is investigated first with model alkylamines (hexylamine, 2-ethylhexylamine and N-propylethylenediamine), a model oligosiloxane (3-aminopropylmethyl bis(trimethylsiloxy)silane), and finally various amino-polysiloxanes. It is shown that after a first acid-base reaction resulting in ionic pairing, aza-Michael addition proceeds smoothly in mild conditions (50 °C, 1-week reaction). Both monoadducts and di-adducts, together with residual amine, are observed by NMR. The supramolecular assembly of the thus-created zwitterionic moieties is highlighted by a concomitant increase in viscosity and phase separation, as observed by transmission electron microscopy, bringing an additional glass transition at -40 °C assigned to highly polar ionic clusters. Below the stoichiometry in acrylic acid, all zwitterionic silicones follow the same classical behavior of nonentangled polymers according to the Rouse model, whereas upon introducing an excess of acrylic acid to amino groups, an enhancement of the elasticity is observed. Finally, silicone elastomers with solid-like behavior and elastomeric mechanical properties are obtained using a high molar mass polymer bearing bifunctional N-(2-aminoethyl)-3-aminopropyl units that favor a high degree of physical crosslinking.

摘要

超分子两性离子硅氧烷是通过丙烯酸与胺官能化聚二甲基硅氧烷之间的氮杂迈克尔反应合成的。首次将这种化学方法应用于硅氧烷时,首先使用模型烷基胺(己胺、2-乙基己胺和N-丙基乙二胺)、模型低聚硅氧烷(3-氨丙基甲基双(三甲基硅氧基)硅烷),最后使用各种氨基聚硅氧烷对其进行深入表征。结果表明,在第一次酸碱反应导致离子配对后,氮杂迈克尔加成在温和条件下(50℃,反应1周)顺利进行。通过核磁共振观察到单加合物和双加合物以及残留胺。通过透射电子显微镜观察到,随着粘度和相分离的同时增加,由此产生的两性离子部分的超分子组装得到了突出显示,在-40℃出现了一个额外的玻璃化转变,这归因于高度极性的离子簇。在丙烯酸的化学计量比以下,所有两性离子硅氧烷根据劳斯模型遵循相同的非缠结聚合物的经典行为,而在向氨基中引入过量丙烯酸时,观察到弹性增强。最后,使用带有双官能N-(2-氨基乙基)-3-氨丙基单元的高摩尔质量聚合物获得了具有类固体行为和弹性体机械性能的硅氧烷弹性体,该聚合物有利于高度的物理交联。

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