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用于低密度多孔纳米碳的孔径可控制备

Pore size controllable preparation for low density porous nano-carbon.

作者信息

Feng Yaning, Wang Juanjuan, Ge Liling, Jiang Bailing, Miao Lei, Tanemura Masaki

机构信息

School of Materials Science and Engineering, Xi'an University of Technology, Xi'an 710048, China.

出版信息

J Nanosci Nanotechnol. 2013 Oct;13(10):7012-5. doi: 10.1166/jnn.2013.8063.

Abstract

Carbon aerogels has particular application in many fields for its nano-sized porous structure. To improve the pore size controllability in the fabrication of carbon aerogels, strategy through increase the formaldehyde concentration to enhance the structural stability of organic resorcinol--formaldehyde (RF) aerogel was proposed in this paper. The RF starting resolution was catalyzed by sodium carbonate in distilled water. The ratio of resorcinol to formaldehyde (R/F ratio) was adjusted from 1/2, 1/1.5, 1/2, 1/2.5 to 1/3. The RF aerogols was derived from wet gel through supercritical drying, and they were carbonized to prepare carbon aerogels. Nano-structural property of the RF aerogels was analyzed by the shrinkage and density. The pore size was discussed by the measurement results of nitrogen gas adsorption. Experimental results show that with an increasing in the concentration of formaldehyde in the starting solution, the structural stability of the RF aerogels increases. It was proved that both the shrinkages and densities of the dried RF aerogels are decreased simultaneously, and that the pore size distribution curves of the RF aerogels are increased steeply through a high concentration of formaldehyde. Therefore, it is tested that the pore size controllability of carbon aerogels is increased with an enhancement in the stability of their RF aerogel precursor.

摘要

碳气凝胶因其纳米级多孔结构在许多领域有着特殊应用。为了在碳气凝胶制备过程中提高孔径可控性,本文提出了通过提高甲醛浓度来增强有机间苯二酚 - 甲醛(RF)气凝胶结构稳定性的策略。RF起始溶液在蒸馏水中由碳酸钠催化。间苯二酚与甲醛的比例(R/F比)从1/2、1/1.5、1/2、1/2.5调整到1/3。RF气凝胶通过超临界干燥从湿凝胶衍生而来,并碳化制备碳气凝胶。通过收缩率和密度分析RF气凝胶的纳米结构性质。通过氮气吸附测量结果讨论孔径。实验结果表明,随着起始溶液中甲醛浓度的增加,RF气凝胶的结构稳定性增强。结果证明,干燥后的RF气凝胶的收缩率和密度同时降低,并且通过高浓度甲醛,RF气凝胶的孔径分布曲线急剧增加。因此,测试表明随着RF气凝胶前驱体稳定性的增强,碳气凝胶的孔径可控性增加。

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