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Chalcogels: Porous Metal−Chalcogenide Networks from Main-Group Metal Ions. Effect of Surface Polarizability on Selectivity in Gas Separation

机译:Chalcogels:主族金属离子中的多孔金属硫族化物网络。表面极化率对气体分离选择性的影响

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摘要

We report the synthesis of metal−chalcogenide gels and aerogels from anionic chalcogenide clusters and linking metal ions. Metal ions such as Sb3+ and Sn2+, respectively chelated with tartrate and acetate ligands, react in solution with the chalcogenide clusters to form extended polymeric networks that exhibit gelation phenomena. Chalcogenide cluster anions with different charge densities, such as [Sn2S6]4− and [SnS4]4−, were employed. In situ rheological measurements during gelation showed that a higher charge density on the chalcogenide cluster favors formation of a rigid gel network. Aerogels obtained from the gels after supercritical drying have BET surface areas from 114 to 368 m2/g. Electron microscopy images coupled with nitrogen adsorption measurements showed the pores are micro (below 2 nm), meso (2−50 nm), and macro (above 50 nm) regions. These chalcogels possess band gaps in the range of 1.00−2.00 eV and selectively adsorb polarizable gases. A 2-fold increase in selectivity toward CO2/C2H6 over H2 was observed for the Pt/Sb/Ge4Se10-containing aerogel compared to aerogel containing Pt2Ge4S10. The experimental results suggest that high selectivity in gas adsorption is achievable with high-surface-area chalcogenide materials containing heavy polarizable elements.
机译:我们从阴离子硫属化物簇和连接金属离子报告了金属硫属化物凝胶和气凝胶的合成。分别与酒石酸盐和乙酸盐配体螯合的金属离子(如Sb 3 + 和Sn 2 + )在溶液中与硫族化物簇反应形成扩展的聚合物网络,从而表现出胶凝现象。具有不同电荷密度的硫族化物簇阴离子,例如[Sn 2 S 6 ] 4-和[SnS 4 使用了 4 − 。凝胶化过程中的原位流变测量表明,硫族化物簇上较高的电荷密度有利于形成刚性凝胶网络。由超临界干燥后的凝胶得到的气凝胶的BET表面积为114至368m 2 / g。电子显微镜图像加上氮吸附测量结果显示,孔为微(2 nm以下),内消旋(2-50 nm)和宏观(50 nm以上)区域。这些查尔凝胶具有1.00-2.00 eV的带隙,并选择性地吸附可极化气体。观察到对CO 2 / C 2 H 6 的选择性是H 2 的2倍。含Pt / Sb / Ge 4 Se 10 的气凝胶与含Pt 2 Ge 4 S 10 。实验结果表明,使用含有重极化元素的高表面积硫属化物材料,可以实现高的气体吸附选择性。

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  • 来源
    《Journal of the American Chemical Society》 |2010年第42期|p.14951-14959|共9页
  • 作者

    Santanu Bag;

  • 作者单位

    Department of Chemistry, Northwestern University, Evanston, Illinois 60208, United States, and Materials Science Division, Argonne National Laboratory, Argonne, Illinois 60439, United States;

  • 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
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  • 入库时间 2022-08-18 00:50:26

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