首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Bottom-up Approach for the Synthesis of a Three-Dimensional Nanoporous Graphene Nanoribbon Framework and Its Gas Sorption Properties
【24h】

Bottom-up Approach for the Synthesis of a Three-Dimensional Nanoporous Graphene Nanoribbon Framework and Its Gas Sorption Properties

机译:自下而上的三维纳米多孔石墨烯纳米带骨架的合成及其吸附性能

获取原文
获取原文并翻译 | 示例
       

摘要

We present a new polymerization strategy, that is catalyst-free DielsAlder cycloaddition polymerization and subsequent FeCl3-catalyzed intramolecular cyclodehydrogenation reaction, to introduce graphene nanoribbons up to 2 nm in length and 1.1 nm in width into a graphene nanoribbon framework (GNF). The first graphene nanoribbon framework showed high thermal stability up to 400 degrees C in air with relatively narrow pore size distribution and exhibited BET surface area of 679 m(2) g(-1). GNF possesses high affinity for H-2 (Qst 7.7 kJ mol(-1), 1.03 wt % at 77 K, 1 bar), CO2 (Q(st) = 28.7 kJ mol(-1), 94.6 mg g(-1) at 273 K, 1 bar), and CH4 (Q(st) = 24.1 kJ mol(-1), 11.5 mg g1 at 273 K, 1 bar). The enhancement in gas affinities was attributed to the unique combination of large p-surface area arising from graphene nanoribbons and small pores (similar to 5.8 angstrom) in GNF. The application of GNF can also be extended to natural gas purification process with exceptional CO2/CH4 (5:95) selectivity of 62.7, which is the highest value reported to date at 298 K. Unlike previous studies that focus mostly on increasing the affinity of CO2 toward the sorbent in order to tune CO2/CH4 selectivity, our approach takes advantage of the kinetic diameter difference between CO2 (3.30 angstrom) and CH4 (3.80 angstrom), thus offering a low-cost efficient alternative for the natural gas purification process.
机译:我们提出了一种新的聚合策略,即无催化剂的DielsAlder环加成聚合反应和随后的FeCl3催化的分子内环脱氢反应,以将最长2 nm,宽1.1 nm的石墨烯纳米带引入石墨烯纳米带骨架(GNF)中。第一个石墨烯纳米带骨架在空气中具有高达400摄氏度的高热稳定性,且孔径分布相对狭窄,并且BET表面积为679 m(2)g(-1)。 GNF对H-2具有高亲和力(Qst 7.7 kJ mol(-1),在77 K,1 bar下为1.03 wt%),CO2(Q(st)= 28.7 kJ mol(-1),94.6 mg g(-1) )在273 K,1 bar下)和CH4(Q(st)= 24.1 kJ mol(-1),在273 K,1 bar下11.5 mg g1)。气体亲和力的增强归因于GNF中石墨烯纳米带和小孔(类似于5.8埃)引起的大p表面积的独特结合。 GNF的应用还可以扩展到天然气净化过程,具有出色的CO2 / CH4(5:95)选择性62.7,这是迄今为止报道的298 K的最高值。为了调整CO2 / CH4的选择性,将CO2吸附到吸附剂上,我们的方法利用了CO2(3.30埃)和CH4(3.80埃)之间的动力学直径差,从而为天然气净化过程提供了一种低成本高效的替代方法。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号