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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 >Reactivity studies, structural characterization, and thermolysis of cubic titanosiloxanes: Precursors to titanosilicate materials which catalyze olefin epoxidation
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Reactivity studies, structural characterization, and thermolysis of cubic titanosiloxanes: Precursors to titanosilicate materials which catalyze olefin epoxidation

机译:立方钛硅氧烷的反应性研究,结构表征和热解:催化烯烃环氧化的钛硅酸盐材料的前体

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摘要

The cubic titanosiloxane [RSiO3Ti(OPri)](4) (R = 2,6-(Pr2C6H3NSiMe3)-C-i) (1) is found to be relatively inert in its attempted reactions with alcohols and other acidic hydrogen containing compounds. The reaction of 1 with silanol ((BuO)-O-t)(3)SiOH however proceeds over a period of approximately 3 months to result in the hydrolysis of ((BuO)-O-t)(3)SiOH and yield the transesterification product [RSiO3Ti(OBut)](4) (2) rather than the expected [RSiO3Ti(OSi(OBut)(3))](4). Products 1 and 2 have been characterized by elemental analysis, thermal analysis, and spectroscopic techniques (IR, EI-MS, and NMR). The solid-state structures of both 1 and 2 have been determined by single-crystal X-ray diffraction studies. Compounds 1 and 2 are isomorphous and crystallize in a cubic space group with a central cubic Ti4Si4O12 core. Solid state thermolysis of 1 was carried at 450, 600, 800, 900, 1000, and 1200 degreesC in air, and the resulting titanosilicate materials 1a-f were characterized by spectroscopic (IR and DR UV), powder XRD, and electron microscopic methods. While, the presence of Ti-O-Si linkages appears to be dominant in the samples prepared at lower temperatures (450-800 degreesC), phase separation of anatase and rutile forms of TiO2 occurs at temperatures above 900 degreesC as revealed by IR spectral and PXRD studies. The presence of octahedral titanium centers was observed by DR UV spectroscopy for the samples heated at higher temperatures. The use of new titanosilicate materials as catalysts for olefin epoxidation has been investigated. The titanosilicate materials produced at temperatures below 800 degreesC with a large number of Ti-O-Si linkages (or tetrahedral titanium centers) were found to be more active catalysts compared to the materials produced above 900 degreesC. The observed conversion in the epoxidation reactions was found to be somewhat low although the selectivity of the epoxide formation over the other possible oxidized products was found to be very good. [References: 95]
机译:发现立方钛钛硅氧烷[RSiO3Ti(OPri)](4)(R = 2,6-(Pr2C6H3NSiMe3)-C-i)(1)在尝试与醇和其他酸性含氢化合物反应时相对惰性。 1与硅烷醇((BuO)-Ot)(3)SiOH的反应历时约3个月,导致((BuO)-Ot)(3)SiOH水解并生成酯交换产物[RSiO3Ti (OBut)](4)(2),而不是预期的[RSiO3Ti(OSi(OBut)(3))](4)。产品1和2已通过元素分析,热分析和光谱技术(IR,EI-MS和NMR)进行了表征。 1和2的固态结构已通过单晶X射线衍射研究确定。化合物1和2是同构的,并且在具有中心立方Ti4Si4O12核的立方空间组中结晶。在空气中分别于450、600、800、900、1000和1200℃进行1的固态热解,所得的钛硅酸盐材料1a-f通过光谱(IR和DR UV),粉末XRD和电子显微镜方法进行表征。虽然Ti-O-Si键的存在似乎是在较低温度(450-800摄氏度)下制备的样品中的主要成分,但锐钛矿和金红石形式的TiO2的相分离发生在900摄氏度以上的温度下,如红外光谱和PXRD研究。通过DR UV光谱法观察了在较高温度下加热的样品的八面体钛中心的存在。已经研究了使用新型钛硅酸盐材料作为烯烃环氧化的催化剂。与在900℃以上生产的材料相比,发现在低于800℃的温度下生产的具有大量Ti-O-Si键(或四面体钛中心)的钛硅酸盐材料是更具活性的催化剂。尽管发现环氧化物形成相对于其他可能的氧化产物的选择性非常好,但是发现在环氧化反应中观察到的转化率有些低。 [参考:95]

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