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Synthesis and properties of phloroglucinol-phenol-formaldehyde carbon aerogels and xerogels

机译:间苯三酚-苯酚-甲醛碳气凝胶和干凝胶的合成及性能

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摘要

Carbon aerogels and xerogels were successfully prepared from phloroglucinol-phenol mixtures and characterized by different techniques to determine their potential. We examined the influence of the phloroglucinol/ phenol ratio, reactant concentration, cure conditions, and drying method on the morphology and porosity of the samples. The gelation time was found to be independent of the phloroglucinol/phenol ratio in spite of the different reactivities of both monomers. In general, carbon aerogels have a high volume of mesopores and of micropores without diffusion restrictions. Carbon xerogels are denser materials without mesopores but with a well-developed microporosity that shows a strong molecular sieve effect. Therefore, while micro-/mesoporous carbon aerogels can be used as catalyst supports or VOC adsorbents, the microporous carbon xerogel could offer high selectivity in the separation of small molecules from gaseous mixtures.
机译:由间苯三酚-苯酚混合物成功制备了碳气凝胶和干凝胶,并通过不同技术对其进行了表征,以确定其潜力。我们研究了间苯三酚/苯酚比率,反应物浓度,固化条件和干燥方法对样品形态和孔隙率的影响。尽管两种单体的反应性不同,但发现胶凝时间与间苯三酚/苯酚比率无关。通常,碳气凝胶具有大量的中孔和微孔,而没有扩散限制。碳干凝胶是较稠密的材料,没有中孔,但具有发达的微孔性,具有很强的分子筛作用。因此,尽管微孔/中孔碳气凝胶可用作催化剂载体或VOC吸附剂,但微孔碳气凝胶可在从气体混合物中分离小分子时提供高选择性。

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