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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Polymerizable organo-gelator-stabilized gel-emulsions toward the preparation of compressible porous polymeric monoliths
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Polymerizable organo-gelator-stabilized gel-emulsions toward the preparation of compressible porous polymeric monoliths

机译:可聚合的有机胶凝剂稳定的凝胶乳液,用于制备可压缩的多孔聚合物整料

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Compressible porous monoliths are important for isolation and separation processes. However, preparation via a gel-emulsion method suffers from high cost, partially due to the consumption of too much stabilizer and less tunability in both mechanical properties and internal structures. To cope with the challenges, a polymerizable cholesteryl derivative ( CEA) was designed and used as a stabilizer of gel-emulsions. In addition, a derivative of poly( oligo)-dimethylsiloxane with two olefinic bonds at its ends ( D-PDMS) was also purposely prepared and employed as a cross-linker for the system. In this way, gel-emulsions with a mixture of toluene, n-heptane, CEA, and D-PDMS as the continuous phase and water as the dispersed phase were prepared. As expected, polymerization of the continuous phase resulted in porous polymeric monoliths. Interestingly, the internal structures of the materials could be largely adjusted via simple variation of the ratio of n-heptane to toluene in the continuous phase. Moreover, utilization of the specially synthesized cross-linker endows the monoliths with flexibility, which must bring convenience for real-life applications. Adsorption tests demonstrated that the porous materials were good adsorbents of formaldehyde ( similar to 1300 mg g(-1)) and toluene ( similar to 900 mg g(-1)) at ambient conditions, and they were reusable after simple washing and drying. Considering the simplest material in the preparation including ambient pressure drying without solvent exchange, the superior performance in the adsorption tests and the fact that the as-created CEA could function both as a monomer and a stabilizer, it is believed that the work presented here represents substantial progress of the techniques used for the preparation of porous polymeric materials. Moreover, the monolith demonstrates new records for the adsorption of toxic formaldehyde and toluene from contaminated air.
机译:可压缩的多孔整料对于分离和分离过程很重要。但是,通过凝胶乳液法的制备成本高,部分原因是由于消耗了太多的稳定剂并且机械性能和内部结构均不易调节。为了应对挑战,设计了一种可聚合的胆固醇基衍生物(CEA),并用作凝胶乳液的稳定剂。另外,还特意制备了在其末端具有两个烯键的聚(低聚)-二甲基硅氧烷的衍生物(D-PDMS),并将其用作该体系的交联剂。以这种方式,制备了以甲苯,正庚烷,CEA和D-PDMS的混合物作为连续相并且以水作为分散相的凝胶乳液。如所预期的,连续相的聚合产生多孔聚合物整料。有趣的是,可以通过简单地改变连续相中正庚烷与甲苯的比例来大大调节材料的内部结构。此外,利用特殊合成的交联剂赋予整体结构以灵活性,这必须为实际应用带来便利。吸附测试表明,该多孔材料在环境条件下是甲醛(类似于1300 mg g(-1))和甲苯(类似于900 mg g(-1))的良好吸附剂,并且在简单洗涤和干燥后即可重复使用。考虑到制剂中最简单的材料,包括无需溶剂交换的常压干燥,吸附测试中的优异性能以及所产生的CEA既可充当单体又可充当稳定剂的事实,相信此处介绍的工作代表了用于制备多孔聚合物材料的技术的实质性进展。此外,整料展示了从污染空气中吸附有毒甲醛和甲苯的新记录。

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