Zeng Ting, Deng Amin, Yang Duanguang, Li Huaming, Qi Chenze, Gao Yong
Key Laboratory of Alternative Technologies for Fine Chemicals Process of Zhejiang Province, College of Chemistry and Chemical Engineering , Shaoxing University , Shaoxing , Zhejiang Province 312000 , China.
College of Chemistry and Key Lab of Environment-Friendly Chemistry and Application in Ministry of Education , Xiangtan University , Xiangtan , Hunan Province 411105 , China.
Langmuir. 2019 Sep 10;35(36):11872-11880. doi: 10.1021/acs.langmuir.9b02341. Epub 2019 Aug 27.
It is significant to explore multiresponsive Pickering emulsions because of their flexibility in terms of demulsification in comparison with the single stimuli-responsive systems. In this study, we described a triple-responsive oil-in-water Pickering emulsion that was stabilized by amphiphilic core cross-linked supramolecular polymer particles (CCSPs). For this purpose, β-cyclodextrin-terminated poly(-isopropylacrylamide) (PNIPAM-β-CD) and azobenzene-capped poly(4-vinylpyridine) (P4VP-azo) were separately synthesized by reversible addition-fragmentation chain transfer polymerization. By virtue of the inclusion interaction between the β-CD host and the azobenzene guest in dimethyl sulfoxide, the amphiphilic supramolecular block copolymer, poly(4-vinylpyridine)--poly(-isopropylacrylamide) (P4VP--PNIPAM), was formed. CCSPs were prepared through the combination of the self-assembly of P4VP--PNIPAM in the selective solvent, water, and the cross-linking of the P4VP core with 1,4-dibromobutane. Due to thermoresponsiveness of PNIPAM shells and the supramolecular linkages between the cross-linked hydrophobic P4VP core and hydrophilic PNIPAM shells, the as-prepared CCSPs exhibited temperature-, light-, and amantadine hydrochloride guest-triggered morphological transitions. Such triple-responsive morphological transitions gifted CCSPs stabilized oil-in-water Pickering emulsion with flexible demulsification in response to various factors, such as thermo, light, and amantadine hydrochloride or their combinations. Such triple-responsive oil-in-water Pickering emulsion also provided an ideal platform for heterogeneous reactions conducted at the oil-water interface. A large interfacial area and responsive demulsification allowed the reaction to be performed with an efficient and sustainable pattern.
探索多响应Pickering乳液具有重要意义,因为与单一刺激响应系统相比,它们在破乳方面具有灵活性。在本研究中,我们描述了一种由两亲性核交联超分子聚合物颗粒(CCSPs)稳定的三响应水包油Pickering乳液。为此,通过可逆加成-断裂链转移聚合分别合成了β-环糊精封端的聚(N-异丙基丙烯酰胺)(PNIPAM-β-CD)和偶氮苯封端的聚(4-乙烯基吡啶)(P4VP-azo)。借助于β-CD主体与二甲基亚砜中偶氮苯客体之间的包合相互作用,形成了两亲性超分子嵌段共聚物聚(4-乙烯基吡啶)-聚(N-异丙基丙烯酰胺)(P4VP-PNIPAM)。通过P4VP-PNIPAM在选择性溶剂水的自组装以及P4VP核与1,4-二溴丁烷的交联制备了CCSPs。由于PNIPAM壳的热响应性以及交联的疏水P4VP核与亲水PNIPAM壳之间的超分子键,所制备的CCSPs表现出温度、光和盐酸金刚烷胺客体触发的形态转变。这种三响应形态转变赋予了CCSPs稳定的水包油Pickering乳液在响应各种因素(如热、光、盐酸金刚烷胺或它们的组合)时具有灵活的破乳能力。这种三响应水包油Pickering乳液还为在油水界面进行的多相反应提供了理想的平台。大的界面面积和响应性破乳使得反应能够以高效且可持续的方式进行。