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Enhanced Hydrogen Storage Capacity of High Surface Area Zeolite-like Carbon Materials

机译:高表面积类沸石碳材料的储氢能力增强

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摘要

We report the synthesis of zeolite-like carbon materials that exhibit well-resolved powder XRD patterns and very high surface area. The zeolite-like carbons are prepared via chemical vapor deposition (CVD) at 800 or 850℃ using zeolite β as solid template and acetonitrile as carbon precursor. The zeolite-like structural ordering of the carbon materials is indicated by powder XRD patterns with at least two well-resolved diffraction peaks and TEM images that reveal well-ordered micropore channels. The carbons possess surface area of up to 3200 m~2/g and pore volume of up to 2.41 cm~3/g. A significant proportion of the porosity in the carbons (up to 76% and 56% for surface area and pore volume, respectively) is from micropores. Both TEM and nitrogen sorption data indicate that porosity is dominated by pores of size 0.6-0.8 nm. The carbon materials exhibit enhanced (and reversible) hydrogen storage capacity, with measured uptake of up to 6.9 wt % and estimated maximum of 8.33 wt % at -196℃ and 20 bar. At 1 bar, hydrogen uptake capacity as high as 2.6 wt % is achieved. Isosteric heat of adsorption of 8.2 kJ/mol indicates a favorable interaction between hydrogen and the surface of the carbons. The hydrogen uptake capacity observed for the zeolite-like carbon materials is among the highest ever reported for carbon (activated carbon, mesoporous carbon, CNTs) or any other (MOFs, zeolites) porous material.
机译:我们报告了合成的沸石状碳材料,该材料表现出良好的粉末XRD图案和非常高的表面积。以沸石β为固体模板,以乙腈为碳前驱体,在800或850℃下通过化学气相沉积(CVD)法制备类沸石碳。碳材料的类沸石结构有序性由粉末XRD图案指示,该粉末XRD图案具有至少两个良好分辨的衍射峰和TEM图像,这些图像揭示了排列良好的微孔通道。碳的表面积高达3200 m〜2 / g,孔体积高达2.41 cm〜3 / g。碳中很大一部分的孔隙度(分别占表面积和孔体积的分别高达76%和56%)来自微孔。 TEM和氮吸附数据均表明,孔隙度主要由0.6-0.8 nm尺寸的孔组成。碳材料具有增强的(和可逆的)储氢能力,在-196℃和20 bar下测得的吸收量高达6.9 wt%,估计最大为8.33 wt%。在1巴下,达到高达2.6重量%的氢吸收能力。 8.2 kJ / mol的等排吸附热表明氢与碳表面之间存在良好的相互作用。观察到的类沸石碳材料的氢吸收能力是有史以来碳(活性炭,中孔碳,CNT)或任何其他(MOF,沸石)多孔材料中最高的。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2007年第6期|p.1673-1679|共7页
  • 作者单位

    School of Chemistry, University of Nottingham, Nottingham NG7 2RD, United Kingdom;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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