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首页> 外文期刊>Organometallics >Surface organometallic chemistry of titanium: Synthesis, characterization, and reactivity of ( Si-O)(n)Ti(CH2C(CH3)(3))(4-n) (n = 1, 2) grafted on aerosil silica and MCM-41
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Surface organometallic chemistry of titanium: Synthesis, characterization, and reactivity of ( Si-O)(n)Ti(CH2C(CH3)(3))(4-n) (n = 1, 2) grafted on aerosil silica and MCM-41

机译:钛的表面有机金属化学:接枝在二氧化硅和MCM-上的(Si-O)(n)Ti(CH2C(CH3)(3))(4-n)(n = 1,2)的合成,表征和反应性41

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摘要

The reaction of tetrakisneopentyl titanium, TiNp4 (1), with the surface of partially dehydroxylated Aerosil silica and MCM-41 and the reactivity of the resultant supported titanium alkyl product with water, alcohols, and oxygen are reported. Two methods of preparation have been investigated and compared for the grafting of TiNp4: (i) reaction of the support with the vapor of the sublimed complex and (ii) impregnation of the support with a solution of the complex. The second method appeared to be more reliable for "larger scale" preparations. The surface species thus obtained were characterized by infrared spectroscopy, solid state NMR, XAFS, elemental analysis, and various test reactions. Whereas on an Aerosil silica partially dehydroxylated at 500 degrees C, SiO2-(500), the surface complex is a monopodal titanium trisalkyl complex, SiO-Ti[CH2C(CH3)(3)](3), 2a, a bipodal titanium bisalkyl complex, ( SiO)(2)Ti[CH2C- CH3)(3)](2), 2b, is obtained as the major species (ca. 65%) with 2a on MCM-41((500)). The reason for this difference in behavior is discussed on the basis of the surface structure. The results obtained from hydrolysis confirmed the structure proposed for the supported alkyl complexes. For the reaction of the alkyl surface complexes with alcohols (MeOH, EtOH, (BuOH)-Bu-t), the surface compounds obtained were characterized by the same techniques and by XPS and UV-vis. The results are consistent with the formation of monosiloxytrisalkoxy titanium complexes on SiO2-(500), SiO-Ti(OR)(3), 3a(OR), and of SiO-Ti((OBu)-Bu-t)(3), 3a(OtBu), and ( SiO)(2)Ti((OBu)-Bu-t)(2), 3b(OtBu), on MCM-41((500)), after reaction with (BuOH)-Bu-t. The supported titanium alkyl, 2a, also reacts with oxygen, leading mainly to SiO-Ti[OCH2C(CH3)(3)](3), probably via an unstable surface compound such as SiO-Ti[OCH2C(CH3)(3)](2)[OOCH2C(CH3)(3)], resulting from the incorporation of two molecules of oxygen in 2a.
机译:据报道,四炔戊基钛TiNp4(1)与部分脱羟基的Aerosil二氧化硅和MCM-41的反应以及所得的负载型钛烷基产物与水,醇和氧的反应性。已经研究了两种制备方法用于TiNp4的接枝并进行了比较:(i)载体与升华配合物的蒸气反应,以及(ii)配合物溶液浸渍载体。对于“大规模”制备,第二种方法似乎更可靠。由此获得的表面物质通过红外光谱,固态NMR,XAFS,元素分析和各种测试反应来表征。而在500℃下部分脱羟基的Aerosil二氧化硅SiO2-(500)上,表面配合物是单足钛三烷基配合物SiO-Ti [CH2C(CH3)(3)](3),2a,双足钛双烷基在MCM-41((500))上获得(SiO)(2)Ti [CH2C-CH3)(3)](2),2b作为主要种类(约65%),其中2a为2a。根据表面结构讨论行为差异的原因。由水解获得的结果证实了对于负载的烷基络合物提出的结构。为了使烷基表面配合物与醇(MeOH,EtOH,(BuOH)-Bu-t)反应,通过相同的技术以及XPS和UV-vis对得到的表面化合物进行表征。结果与在SiO2-(500),SiO-Ti(OR)(3),3a(OR)和SiO-Ti((OBu)-Bu-t)(3)上形成单硅氧基三烷氧基钛配合物是一致的(3)(OtBu)和(SiO)(2)Ti((OBu)-Bu-t)(2),3b(OtBu)在MCM-41((500))上与(BuOH)-Bu反应后-t。负载的烷基钛2a也与氧反应,主要通过不稳定的表面化合物(例如SiO-Ti [OCH2C(CH3)(3))导致SiO-Ti [OCH2C(CH3)(3)](3) ](2)[OOCH2C(CH3)(3)],是由于在2a中引入了两个氧分子。

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