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Carbon aerogels, cryogels and xerogels: Influence of the drying method on the textural properties of porous carbon materials

机译:碳气凝胶、低温凝胶和干凝胶:干燥法对多孔碳材料织构性能的影响

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摘要

Carbon materials with tailored texture can be obtained from drying and pyrolysis of resorcinol-formaldehyde gels. The pore texture of both dried and pyrolyzed material depends on the drying process. Several more or less expensive methods (supercritical drying, freeze-drying, evaporative drying) were tested in order to determine which process is the most suitable for the synthesis of a porous carbon with a definite texture. Supercritical drying leads to the highest pore volume and the widest texture range, but residual surface tensions and shrinkage are not avoided when the pore size is small or when the material density is low; this hampers to fix both the pore volume and the pore size easily. Monoliths are very difficult to obtain by freeze-drying, and the appearance of huge channels due to ice crystal growth at high dilution ratio hinders the fabrication of low density materials. Moreover, gels with small pores do not remain frozen throughout drying, which leads to surface tensions and shrinkage. Although generally replaced by more complicated techniques, evaporative drying is suitable when dense carbons are needed or when the only selection criterion is the pore size: all pore sizes are reachable, but this parameter is in this case strongly correlated to the pore volume.
机译:通过间苯二酚-甲醛凝胶的干燥和热解,可以获得具有定制质地的碳材料。干燥和热解材料的孔隙纹理取决于干燥过程。测试了几种或多或少昂贵的方法(超临界干燥,冷冻干燥,蒸发干燥),以确定哪种工艺最适合合成具有一定质地的多孔碳。超临界干燥导致孔隙体积最大,织构范围最广,但当孔径小或材料密度低时,不能避免残余表面张力和收缩;这妨碍了轻松固定孔隙体积和孔径。通过冷冻干燥很难获得单体,并且由于高稀释比下冰晶生长而出现的巨大通道阻碍了低密度材料的制造。此外,具有小孔隙的凝胶在整个干燥过程中不会保持冻结状态,这会导致表面张力和收缩。虽然通常被更复杂的技术所取代,但蒸发干燥适用于需要致密碳或唯一的选择标准是孔径时:所有孔径都可以达到,但在这种情况下,该参数与孔隙体积密切相关。

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