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Layered Hydrazinium Titanate: Advanced Reductive Adsorbent and Chemical Toolkit for Design of Titanium Dioxide Nanomaterials

机译:层状钛酸氢锆:用于设计二氧化钛纳米材料的高级还原性吸附剂和化学工具包

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摘要

LHT-9, a layered hydrazinium titanate with an interlayer spacing of ~9 A, is a new nanohybrid compound combining the redox functionality of hydrazine, the ion-exchange properties of layered titanate, the large surface area of quasi-two-dimensional crystallites, surface Brφnsted acidity, and the occurrence of surface titanyl bonds. LHT-9, ideally formulated as (N_2H_5)_(1/2)Ti_1.87O_4, relates to a family of lepidocro-dte-type titanates. It possesses a high uptake capacity of ~50 elements of the periodic table. Irreversibility of reductive adsorption allows LHT-9 to be used for cumulative extraction of reducible moieties (noble metals, chromate, mercury, etc.) from industrial solutions and wastewaters. Unlike sodium titanates that do not tolerate an acidic environment, LHT-9 is capable of uptake of transition metals and lanthanides at pH > 3. Adsorption products loaded with the desired elements retain their layered structures and can be used as precursors for tailored titanium dioxide nanomaterials. In this respect, the uptake of metal ions by LHT-9 can be considered as a method complementary to electrostatic self-assembly deposition (ESD) and layer-by-layer self-assembly (LBL) techniques. LHT-9 is readily synthesized in one step by a mild fluoride route involving hydrazine-induced hydrolysis of hexafluorotitanic acid under near-ambient conditions.
机译:LHT-9是层状间距为〜9 A的层状钛酸肼,是一种新型的纳米杂化化合物,结合了肼的氧化还原功能,层状钛酸酯的离子交换特性,准二维微晶的大表面积,表面Brφnsted酸度,以及表面钛氧基键的发生。理想地被配制为(N_2H_5)_(1/2)Ti_1.87O_4的LHT-9涉及一种lepidocro-dte型钛酸酯。它具有周期表中约50个元素的高吸收能力。还原吸附的不可逆性使LHT-9可用于从工业溶液和废水中累积提取可还原部分(贵金属,铬酸盐,汞等)。与不能耐受酸性环境的钛酸钠不同,LHT-9能够在pH> 3的情况下吸收过渡金属和镧系元素。负载有所需元素的吸附产物保留了其层状结构,可用作定制的二氧化钛纳米材料的前体。在这方面,LHT-9对金属离子的吸收可被视为与静电自组装沉积(ESD)和逐层自组装(LBL)技术互补的方法。 LHT-9易于通过轻度氟化物路线一步合成,该过程涉及在近乎环境条件下肼诱导的六氟钛酸水解。

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  • 来源
    《Journal of the American Chemical Society》 |2011年第24期|p.9516-9525|共10页
  • 作者单位

    Department of Crystallography, Geological Faculty, St. Petersburg State University, Universitetskaya Nab. 7/9,199034 St. Petersburg, Russia,Nanomaterials Research Center, Kola Science Center, Russian Academy of Sciences, 184200 Apatity, Murmansk Reg., Russia;

    Institute for Material Science, Synthesis and Real Structure, University Kiel, Kaiserstrasse 2, 24143 Kiel, Germany;

    Institute for Material Science, Synthesis and Real Structure, University Kiel, Kaiserstrasse 2, 24143 Kiel, Germany;

    Department of Crystallography, Geological Faculty, St. Petersburg State University, Universitetskaya Nab. 7/9,199034 St. Petersburg, Russia,Nanomaterials Research Center, Kola Science Center, Russian Academy of Sciences, 184200 Apatity, Murmansk Reg., Russia;

    Institute for Geosciences, University Kiel, Olshausenstrasse 40, 24118 Kiel, Germany;

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