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首页> 外文期刊>Microporous and mesoporous materials: The offical journal of the International Zeolite Association >Incorporation of Ti(III) into the AlPO4-5 framework by direct synthesis
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Incorporation of Ti(III) into the AlPO4-5 framework by direct synthesis

机译:通过直接合成将Ti(III)掺入AlPO4-5骨架

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摘要

This work focuses on the synthesis and characterization of a conceptually innovative series of TAPO materials, particularly centered in the AFI-structured TAPO-5. Unlike the conventional TAPOs, the so-called Ti(IH)APO-5 are prepared by using Ti(III) sources. This strategy aims to avoid the presence of both Ti-O-Al and Ti-O-Ti bonds in TAPOs, undesired for catalytic purposes. The thermodynamic stability of this oxidation state of Ti in water and in the presence of air is low, but the preparation of the gel and the filling of the autoclaves under N2 atmosphere allowed Ti to maintain its 3+ oxidation state in a considerable proportion in the hydrothermally-crystallized solids. The materials were characterized by powder XRD, ICP chemical analysis, SEM, DR-UV-visible spectroscopy, TGA and ~(31)P and ~(27)A1 MAS NMR. DR-UV-visible spectroscopy certified the presence of Ti(III) in both tetrahedral and octahedral environments in the as-made samples before being exposed to air, whereas ~(31)P MAS NMR indicated the vicinity of Ti in the second coordination sphere of P in the already oxidized sample. Although once dried and calcined in air Ti(III) is entirely oxidized to Ti(lV), Ti(III)APO-5 materials present key singularities against conventional TAPO-5. Thus, apart from the presence of Ti(OP)4 environments, the charge transfer transition detected by DR-UV-vis appears at lower wavelength, whereas both TGA and ~(27)A1 NMR indicates a peculiar hydration of the as-prepared samples, which is unprecedented in conventional TAPO-5. Based on these characterization features, the possible nature of the Ti centers generated by this synthesis approach is discussed.
机译:这项工作专注于概念创新系列TAPO材料的合成和表征,特别是在AFI结构的TAPO-5中。与传统的TAPO不同,所谓的Ti(IH)APO-5是通过使用Ti(III)源制备的。该策略旨在避免在TAPO中同时存在Ti-O-Al和Ti-O-Ti键,而这在催化方面是不希望的。 Ti在水中和空气中的这种氧化态的热力学稳定性很低,但是在N2气氛下制备凝胶和高压釜后,Ti可以保持其3+氧化态的比例相当大。水热结晶固体。通过粉末XRD,ICP化学分析,SEM,DR-UV-可见光谱,TGA和〜(31)P和〜(27)A1 MAS NMR对材料进行了表征。 DR-UV可见光谱法证明了暴露在空气中之前原样样品中四面体和八面体环境中都存在Ti(III),而〜(31)P MAS NMR表明第二配位球中的Ti附近在已经氧化的样品中的P尽管一旦在空气中干燥和煅烧,Ti(III)就会被完全氧化为Ti(IV),但Ti(III)APO-5材料相对于传统的TAPO-5具有关键的奇点。因此,除了存在Ti(OP)4环境外,通过DR-UV-vis检测到的电荷转移跃迁出现在较低波长下,而TGA和〜(27)A1 NMR都表明所制备样品的特殊水合,这在传统的TAPO-5中是前所未有的。基于这些特征,讨论了这种合成方法生成的Ti中心的可能性质。

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