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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Layered Metal(IV) Phosphonates with Rigid Pendant Groups: New Synthetic Approaches to Nanosized Zirconium Phosphate Phenylphosphonates
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Layered Metal(IV) Phosphonates with Rigid Pendant Groups: New Synthetic Approaches to Nanosized Zirconium Phosphate Phenylphosphonates

机译:具有刚性悬挂基团的层状金属(IV)膦酸酯:纳米磷酸锆磷酸苯酯的新合成方法

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摘要

Single phase mixed zirconium phosphate phenylphosphonates, ZrP(PP)_x, were prepared by two different synthetic approaches: reaction of gels of nanosized α-zirconium phosphate in propanol with solutions of phenylphosphonic acid (H_2PP), leading to the topotactic exchange of monohydrogen phosphate groups with phenylphosphonate groups, and precipitation from propanol solutions of H_2PP, phosphoric acid, and zirconyl propionate. In both cases, propanol intercalated compounds were obtained. The x values of the ZrP(PP)_x materials prepared by topotactic anion exchange ranged from 0.37 to 0.56 for (H_2PP/Zr) molar ratios in the range 0.52?4.16 and [H_2PP] = 0.1 M, while a maximum x value of 0.73 was only reached at 60 °C, with (H_2PP/Zr) = 4.16 and [H_2PP] = 0.31 M. Direct precipitation of ZrP(PP)_x provided samples with 0.13 ≤ x ≤ 1.54, for H_2PP molar fractions in the range 0.05?0.5 and (P/Zr) molar ratio = 6. At 90% relative humidity, the (H_2O/Zr) molar ratio for the precipitated ZrP(PP)_x powder samples increased in the range 1.3?3.0 with increasing x and resulted in being higher than that of nanosized ZrP (0.8). The analysis of the X-ray diffraction patterns of the gel and powder samples, together with the hydration data of the powder samples, suggested a structural model in which the random distribution of the phosphate and phenylphosphonate groups creates cavities which can accommodate propanol molecules in the gel samples and water molecules in the hydrated powder samples.
机译:通过两种不同的合成方法制备了单相混合磷酸锆苯基膦酸酯ZrP(PP)_x:纳米α-磷酸锆在丙醇中的凝胶与苯基膦酸(H_2PP)溶液的反应,导致磷酸单氢基团的正向交换带有苯基膦酸酯基团,并从H_2PP,磷酸和丙酸锆酯的丙醇溶液中沉淀出来。在两种情况下,均获得了丙醇插层化合物。当(H_2PP / Zr)摩尔比在0.52?4.16范围内且[H_2PP] = 0.1 M时,通过全位阴离子交换制备的ZrP(PP)_x材料的x值在0.37至0.56的范围内,而最大x值为0.73仅在60°C时达到(H_2PP / Zr)= 4.16和[H_2PP] = 0.31M。ZrP(PP)_x的直接沉淀提供了H3PP摩尔分数在0.05范围内的0.13≤x≤1.54的样品。 0.5和(P / Zr)摩尔比=6。在90%相对湿度下,随着x的增加,沉淀的ZrP(PP)_x粉末样品的(H_2O / Zr)摩尔比在1.3?3.0范围内增加,并导致高于纳米ZrP(0.8)。对凝胶和粉末样品的X射线衍射图谱以及粉末样品的水合数据进行分析,表明了一种结构模型,其中磷酸酯和苯基膦酸酯基团的无规分布会产生可容纳丙醇分子的空腔。凝胶样品和水合粉末样品中的水分子。

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