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Polymerization under Hypersaline Conditions: A Robust Route to Phenolic Polymer-Derived Carbon Aerogels

机译:高盐条件下的聚合:酚类聚合物衍生的碳气凝胶的稳健路线

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摘要

Polymer-derived carbon aerogels can be obtained by direct polymerization of monomers under hypersaline conditions using inorganic salts. This allows for significantly increased mechanical robustness and avoiding special drying processes. This concept was realized by conducting the polymerization of phenol-formaldehyde (PF) in the presence of ZnCl2 salt. Afterwards, the simultaneous carbonization and foaming process conveniently converts the PF monolith into a foam-like carbon aerogel. ZnCl2 plays a key role, serving as dehydration agent, foaming agent, and porogen. The carbon aerogels thus obtained are of very low density (25 mg cm(-3)), high specific surface area (1340 m(2) g(-1)), and have a large micro-and mesopore volume (0.75 cm(3) g(-1)). The carbon aerogels show very promising potential in the separation/extraction of organic pollutants and for energy storage.
机译:聚合物衍生的碳气凝胶可通过在高盐条件下使用无机盐将单体直接聚合而获得。这可以显着提高机械强度,并避免特殊的干燥过程。通过在ZnCl2盐的存在下进行苯酚甲醛(PF)的聚合反应来实现这一概念。之后,同时进行的碳化和发泡过程可方便地将PF单块转化为泡沫状的碳气凝胶。 ZnCl2起着关键作用,用作脱水剂,发泡剂和致孔剂。由此获得的碳气凝胶密度非常低(25 mg cm(-3)),比表面积高(1340 m(2)g(-1)),并且具有较大的微孔和中孔体积(0.75 cm( 3)g(-1))。碳气凝胶在有机污染物的分离/提取以及储能方面显示出非常有前途的潜力。

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