Wang Xiqing, Liang Chengdu, Dai Sheng
Chemical Sciences Division, Oak Ridge National Laboratory, Oak Ridge, Tennessee 37831-6201, USA.
Langmuir. 2008 Jul 15;24(14):7500-5. doi: 10.1021/la800529v. Epub 2008 Jun 12.
The effect of phenols reactivity with formaldehyde on the formation of ordered mesoporous carbons has been investigated. A strategy to accelerate the polymerization of phenolic resins by using strongly acidic conditions is proposed. The self-assembly of resorcinol-formaldehyde and block copolymers (e.g., F127) under highly acidic concentrations (e.g., 1.5 M HCl) is probably driven by the I+X-S+ mechanism and hydrogen bonding and affords a highly reproducible approach for synthesis of ordered mesoporous carbons. The synthesis can be readily scaled up with no change in sample quality. The carbon material obtained (denoted as C-ORNL-1) exhibits highly ordered hexagonal mesostructure, with a typical BET surface area of approximately 600 m2/g, pore size of 6.3 nm, and pore volume of approximately 0.60 cm3/g. One of the unique structural features of C-ORNL-1 is its high thermal stability; it can be graphitized at 2600 degrees C while considerable mesoporosity is maintained.
研究了酚类与甲醛的反应性对有序介孔碳形成的影响。提出了一种利用强酸性条件加速酚醛树脂聚合的策略。间苯二酚 - 甲醛与嵌段共聚物(如F127)在高酸性浓度(如1.5 M HCl)下的自组装可能是由I + X - S + 机制和氢键驱动的,为有序介孔碳的合成提供了一种高度可重复的方法。该合成可以很容易地扩大规模,而样品质量不变。所得的碳材料(记为C - ORNL - 1)具有高度有序的六方介观结构,典型的BET表面积约为600 m2/g,孔径为6.3 nm,孔体积约为0.60 cm3/g。C - ORNL - 1独特的结构特征之一是其高热稳定性;它可以在2600℃下石墨化,同时保持相当大的介孔率。