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A New Paradigm for Anion Trapping in High Capacity and Selectivity: Crystal-to-Crystal Transformation of Cationic Materials

机译:高容量和高选择性捕集阴离子的新范例:阳离子材料的晶体到晶体转化

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摘要

We describe a new methodology to the selective trapping of priority pollutants that occur inherently as oxo-anions (e.g., perchlorate, chromate, arsenate, pertechnetate, etc) or organic anions (e.g., salicylate, pharmaceuticals, and their metabolites, which are often chlorinated into potentially more harmful compounds). The typical approach to trapping anions is exchange into cationic hosts such as resins or layered double hydroxides. Both capacity and selectivity are limited by the equilibrium of the process and moreover are often subject to interference, e.g. by carbonate that is always present in water from atmospheric CO_2. Our approach takes advantage of the metastability of our cationically charged materials to instead trap by recrystallizatdon to a new structure. Exceptionally high adsorption capacities for permanganate and perrhenate-studied as models for pertechnetate-were found for a Ag(I) -based cationic extended framework. The exchange capacity reached 292 and 602 mg/ g, respectively, over five times the exchange capacity compared to conventional layered double hydroxides. Our cationic material can also selectively trap these and other toxic oxoanions when nontoxic anions (e.g., nitrate, carbonate) were present in an over 100-fold excess concentration.
机译:我们描述了一种选择性捕集固有污染物的新方法,这些污染物固有存在于含氧阴离子(例如高氯酸根,铬酸根,砷酸根,高tech酸根等)或有机阴离子(例如水杨酸根,药物及其代谢产物中,它们通常被氯化)变成可能有害的化合物)。捕获阴离子的典型方法是交换成阳离子主体,例如树脂或层状双氢氧化物。容量和选择性都受到过程平衡的限制,而且经常受到干扰,例如是由大气中的CO_2总是存在于水中的碳酸盐造成的。我们的方法利用了带阳离子的材料的亚稳性,而不是通过重结晶捕获到新结构中。对于基于Ag(I)的阳离子扩展骨架,发现了高锰酸盐和高r酸盐作为模型的高tech酸盐的极高吸附能力。交换容量分别达到292和602 mg / g,是传统层状双氢氧化物交换容量的五倍以上。当无毒阴离子(例如硝酸根,碳酸根)的过量浓度超过100倍时,我们的阳离子材料还可以选择性地捕获这些和其他有毒的含氧阴离子。

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  • 来源
    《Journal of the American Chemical Society》 |2011年第29期|p.11110-11113|共4页
  • 作者单位

    University of California, Santa Cruz, Department of Chemistry and Biochemistry, 1156 High Street, Santa Cruz, California 95064, United States;

    University of California, Santa Cruz, Department of Chemistry and Biochemistry, 1156 High Street, Santa Cruz, California 95064, United States;

    University of California, Santa Cruz, Department of Chemistry and Biochemistry, 1156 High Street, Santa Cruz, California 95064, 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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