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首页> 外文期刊>Journal of Catalysis >Structure and properties of PVMo_(11)O_(40) heteropolyoxomolybdate supported on silica SBA-15 as selective oxidation catalyst
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Structure and properties of PVMo_(11)O_(40) heteropolyoxomolybdate supported on silica SBA-15 as selective oxidation catalyst

机译:二氧化硅SBA-15负载的PVMo_(11)O_(40)杂多氧钼酸酯的结构和性能

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Investigations into structure and properties of heteropolyoxomolybdates (HPOM) supported on nanostructured silica SBA-15 for the selective oxidation of propene are presented. H_4[PVMo_(11)O_(40)] Keggin ions supported on SBA-15 (PVMo_(11)-SBA-15) were prepared by incipient wetness of silica SBA-15 with suitable precursor solutions. Structure and properties of the resulting material were studied ex situ by X-ray diffraction and nitrogen physisorption measurements and in situ by combined X-ray absorption spectroscopy (XAS) and mass spectrometry under various reaction conditions. The characteristic structure of PVMo_(11)-SBA-15 and its evolution under reactive gas atmosphere are compared to that of bulk H_4[PVMo _(11)O_(40)]xH_2O. Structural investigations of as-prepared PVMo_(11)-SBA-15 have shown that the respective Keggin ions can be readily supported on silica SBA-15. In situ XAS measurements under reducing or oxidizing conditions revealed a pronounced support interaction effect. This effect resulted in a further decreased thermal stability of the supported Keggin ions compared to bulk H_4[PVMo_(11)O _(40)]xH_2O. Apparently, no stable HPOM Keggin ions could be obtained on silica SBA-15 under reaction conditions. However, in spite of their low thermal stability, HPOM supported on SBA-15 remain suitable well-defined precursors for preparing mixed oxide model catalysts for selective oxidation reactions.
机译:提出了对纳米结构二氧化硅SBA-15上负载的丙烯进行选择性氧化的杂多氧钼酸酯(HPOM)的结构和性能的研究。通过用合适的前体溶液对二氧化硅SBA-15进行初期润湿来制备负载在SBA-15上的H_4 [PVMo_(11)O_(40)] Keggin离子(PVMo_(11)-SBA-15)。在不同的反应条件下,通过X射线衍射和氮物理吸附测量在异地研究所得材料的结构和性能,并通过组合X射线吸收光谱法(XAS)和质谱在原位研究所得材料的结构和性能。将PVMo_(11)-SBA-15的特征结构及其在反应性气体气氛下的演化与本体H_4 [PVMo _(11)O_(40)] xH_2O的演化进行了比较。制备的PVMo_(11)-SBA-15的结构研究表明,各自的Keggin离子可轻松负载在二氧化硅SBA-15上。在还原或氧化条件下的原位XAS测量显示出明显的支持物相互作用效应。与本体H_4 [PVMo_(11)O _(40)] xH_2O相比,该效应导致负载的Keggin离子的热稳定性进一步降低。显然,在反应条件下,在二氧化硅SBA-15上无法获得稳定的HPOM Keggin离子。然而,尽管其热稳定性低,但SBA-15上负载的HPOM仍然是合适的定义明确的前体,可用于制备用于选择性氧化反应的混合氧化物模型催化剂。

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