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首页> 外文期刊>Journal of Solid State Chemistry >Synthesis and structural characterization of a new chiral porous hybrid organic-inorganic material based on γ-zirconium phosphates and l-(+)-phosphoserine
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Synthesis and structural characterization of a new chiral porous hybrid organic-inorganic material based on γ-zirconium phosphates and l-(+)-phosphoserine

机译:基于γ-磷酸锆和l-(+)-磷酸丝氨酸的新型手性多孔杂化有机-无机材料的合成与结构表征

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In the present work, a chiral layered derivative of γ-zirconium phosphate (γ-ZrP) containing l-(+)-phosphoserine (γ-ZrP-PS*) covalently attached to inorganic layers has been prepared by means of topotactic exchange reaction. This organic-inorganic derivative is characterized by X-ray diffractometry, Solid ~(13)C-NMR and FT-IR spectrophotometries and thermal analyses. A maximum level of topotactic replacement of 20% is achieved. Under both the acidic environment of the interlayer region of γ-ZrP and the acidic synthesis conditions, the hydrolysis of the ester bond of PS* is expected to take place to some extent. For this reason, it was impossible to exceed the recent percentage, which in turn reflects the relative moderate stability of the above mentioned bond under these conditions. In order to be more certain with regard to an expected further hydrolysis for this bond after separation, a sample of γ-ZrP-PS* was stored in a desiccator over a saturated solution of BaCl_2 (90% relative humidity) for three months, and then the sample re-analyzed once again. Surprisingly, the results show that the sample still keeps almost the same level of exchange (i.e., 20%). Second, it is revealed that the sample almost gives the same spectroscopic and thermal behavior. This could be attributed to the less acidic character of the partially exchanged inorganic layers of the sample in comparison with that of the precursor γ-ZrP. Therefore, the PS* molecules persist and stay there into the interlayer gallery without further hydrolysis.
机译:在目前的工作中,已经通过全位交换反应制备了共价结合到无机层上的包含1-(+)-磷酸丝氨酸(γ-ZrP-PS*)的γ-磷酸锆(γ-ZrP)的手性层状衍生物。该有机-无机衍生物的特征在于X射线衍射法,固体〜(13)C-NMR和FT-IR分光光度法以及热分析。最高可达200​​%的局部替代疗法。在γ-ZrP的中间层区域的酸性环境和酸性合成条件下,都期望PS *的酯键发生一定程度的水解。因此,不可能超过最近的百分比,这又反映了上述债券在这些条件下的相对中等的稳定性。为了更加确定分离后该键的预期进一步水解,将γ-ZrP-PS*样品在干燥器中的BaCl_2饱和溶液(相对湿度为90%)中存储三个月,然后然后再次重新分析样品。令人惊讶的是,结果表明样品仍保持几乎相同的交换水平(即20%)。其次,揭示了样品几乎具有相同的光谱和热行为。这可以归因于样品的部分交换的无机层与前体γ-ZrP相比具有较低的酸性。因此,PS *分子持续存在并停留在中间层通道中,而没有进一步水解。

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