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Microwave synthesized mesoporous Tin MFI as efficient catalyst for Baeyer-Villiger Oxidation of cyclic ketones

机译:微波合成介孔锡MFI作为Baeyer-Villiger氧化环酮的高效催化剂

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Tin incorporated mesoporous Sn-MFI catalysts with different Si/Sn ratio using microwave were synthesized with carbon as hard template. These tin MFI catalysts were characterized using various physicochemical techniques; XRD reviled the formation of more crystalline MFI structures which was further supported by the SEM and TEM imaging which clearly showed well ordered zeolite single crystals with mesoporosity. The N2 sorption isothers reviled the formation of bimodal mesoporous zeolites and the presence of tin in tetrahedral site was confirmed by FTIR (970 cm~(-1)) and XPS (3d_(5/2) and 3d_(3/2) electronic states). The thus synthesized mesoporous Sn-MFI catalysts with different Si/Sn ratios were used in studying the catalytic Baeyer-Villiger Oxidation (BVO) of cyclic ketones.
机译:使用微波的锡掺入具有不同Si / Sn比的介孔Sn-MFI催化剂用碳作为硬模板合成。这些锡MFI催化剂的特征在于使用各种物理化学技术来表征; XRD旋转形成更多结晶MFI结构,该结构进一步支持的SEM和TEM成像,其清楚地显示出具有中间渗透性的良好的沸石单晶。 N2吸附等等升级了双峰介孔沸石的形成,通过FTIR(970cm〜(-1))和XPS(3D_(5/2)和3D_(3/2)电子状态确认了四面体部位中锡的存在)。使用不同Si / Sn比的由此合成的介孔Sn-MFI催化剂用于研究环状酮的催化Baeyer-Villiger氧化(BVO)。

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