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首页> 外文期刊>RSC Advances >Porous monoliths synthesized via polymerization of styrene and divinyl benzene in nonaqueous deep-eutectic solvent-based HIPEs
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Porous monoliths synthesized via polymerization of styrene and divinyl benzene in nonaqueous deep-eutectic solvent-based HIPEs

机译:通过苯乙烯和二乙烯基苯的聚合在非水深 - 共晶溶剂的臀部聚合合成多孔整料

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摘要

Stable nonaqueous high internal phase emulsions (HIPEs) were prepared and thermally polymerized to yield poly(HIPEs). The internal phase accounting for 80 vol% of the HIPE consisted of a deep-eutectic solvent (DES) while the continuous one comprised styrene and divinyl benzene in a 10 : 1 molar ratio. DESs with different viscosities were used as an internal phase: choline chloride combined with urea, glycerol or ethylene glycol in a 1 : 2, salt : hydrogen bond donor molar ratio, respectively. HIPEs were stabilized with different amounts of the surfactant Span 60 (10, 20 and 50 wt% with respect to the total amount of monomers). DESs viscosity and the amount of surfactant employed impact the morphology and mechanical properties of poly(HIPEs). Resulting poly(HIPEs) showed interconnected porosity and high thermal stability above 310 degrees C. It's worth noting that DES was recovered from 89 to nearly 95 wt% and the monomer conversion was as high as 0.96. In addition, water-in-oil HIPEs were stabilized and then polymerized under the same conditions, but the porous structure of the resulting poly(HIPEs) collapsed. This research demonstrates that DESs are a suitable internal phase for HIPEs thus expanding on the range of monomers forming polymerizable DES-based HIPEs.
机译:制备稳定的非水高内相乳液(臀部)并热聚合以产生聚(臀部)。内部相位占HIPE的80体积%组成,其由深度共晶溶剂(DES)组成,而连续的一个包含苯乙烯和二乙烯基苯的10:1摩尔比。用不同粘度的DES用作内部相:氯化胆碱与尿素,甘油或乙二醇中的1:2,盐:氢键供体摩尔比。用不同量的表面活性剂跨度60(10,20和50wt%相对于单体的总量)稳定臀部。 DESS粘度和表面活性剂的量使用影响聚(臀部)的形态和力学性能。得到的聚(臀部)显示出互连的孔隙率和高热稳定性高于310℃。值得注意的是从89到近95wt%回收DES,单体转化高达0.96。此外,稳定油臀部,然后在相同条件下聚合,但是所得聚(臀部)的多孔结构塌陷。该研究表明,DES是臀部的合适内相,因此在形成可聚合的DES基髋部的单体范围内扩展。

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  • 来源
    《RSC Advances 》 |2015年第30期| 共6页
  • 作者单位

    CSIC ICMM Madrid 28049 Spain;

    Louisiana State Univ Dept Chem Baton Rouge LA 70803 USA;

    Univ Guadalajara Ingn Quim Guadalajara 44430 Jalisco Mexico;

    Louisiana State Univ Dept Chem Baton Rouge LA 70803 USA;

    CSIC ICMM Madrid 28049 Spain;

    Ctr Invest &

    Estudios Avanzados Unidad Queretaro Queretaro 76230 Mexico;

    UNAM Catedras Conacyt Ctr Nanociencias &

    Nanotecnol Ensenada 22860 Baja California Mexico;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学 ;
  • 关键词

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