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首页> 外文期刊>Journal of Materials Science >Organo-functionalized mesoporous supports for Jacobsen-type catalyst: Laponite versus MCM-41
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Organo-functionalized mesoporous supports for Jacobsen-type catalyst: Laponite versus MCM-41

机译:雅各布森型催化剂的有机官能化介孔载体:皂石与MCM-41

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摘要

In order to exploit the different textural properties of Laponite and MCM-41, specifically in terms of their external versus internal surface areas, in the covalent anchoring of a chiral Mn(III) salen complex, these materials were functionalized with 3-aminopropyltriethoxysilane (APTES), subsequently activated with sodium ethoxide, and finally used to anchor the Jacobsen catalyst derivative C1. All the materials were characterized by nitrogen elemental analysis, XPS, PXRD, nitrogen adsorption at -196 A degrees C, FTIR and for those with the immobilized complex, they were additionally characterized by Mn AAS. The APTES anchored at the edges of the Laponite single crystals and inside the MCM-41 pores. Moreover, under the same preparative conditions, higher amount of APTES was anchored onto MCM-41 than onto Laponite, which is due to the higher surface area of MCM-41 compared to Laponite, as well as to its more exposed SiO4 tetrahedra. Activation of the two organo-functionalized materials with sodium ethoxide originated anionic nitrogen groups as deduced by the increase of surface sodium content of these materials and N1s binding energy changes, but led to a small decrease in N bulk content as a result of some APTES leaching. Moreover, for MCM-41 some disruption of the silica framework occurred as a consequence of the basic treatment, as suggested by XPS, PXRD, and nitrogen adsorption study. The APTES functionalized Laponite and MCM-41 materials, as well as the activated analogs, were able to anchor C1 through axial coordination of the metal centre to the grafted surface nitrogen atoms. APTES functionalized MCM-41 presented similar complex content to Laponite analog, what points out for the fact that, at least for the bulky complex used in this work, there was no clear benefit in using a material of high internal area; for the ethoxide activated analogs, Laponite showed the highest complex content of all materials, but MCM-41 was able to anchor the lowest complex quantity, probably as a consequence of damaging effect caused by the basic treatment within its porous structure.
机译:为了利用Laponite和MCM-41的不同质构特性,特别是在它们的内外表面积方面,在手性Mn(III)salen络合物的共价锚固中,将这些材料用3-氨丙基三乙氧基硅烷(APTES)进行了功能化。 ),随后用乙醇钠活化,最后用于锚定Jacobsen催化剂衍生物C1。所有材料均通过氮元素分析,XPS,PXRD,-196 A℃下的氮吸附,FTIR进行了表征,对于那些具有固定配合物的材料,还通过Mn AAS对其进行了表征。 APTES锚定在Laponite单晶的边缘和MCM-41孔内。此外,在相同的制备条件下,与Laponite相比,锚定在AP上的APTES量要多于Laponite,这是由于MCM-41的表面积比Laponite更大,并且其SiO4四面体更易暴露。两种有机功能化材料被乙醇钠活化后,由这些材料的表面钠含量的增加和N1s结合能的变化推断出了阴离子氮基团,但由于一些APTES的浸出,导致氮的体积含量小幅下降。 。而且,对于MCM-41,XPS,PXRD和氮吸附研究表明,由于进行了碱性处理,二氧化硅骨架发生了一些破坏。 APTES功能化的Laponite和MCM-41材料以及活化的类似物能够通过金属中心与接枝表面氮原子的轴向配位将C1锚定。 APTES功能化的MCM-41呈现出与Laponite类似物相似的复合物含量,这说明了一个事实,即至少对于这项工作中使用的大体积复合物,使用高内部面积的材料没有明显的好处。对于乙醇氧化物活化的类似物,Laponite的复合物含量最高,但MCM-41能够锚固最低的复合物含量,这可能是由于其多孔结构内的基本处理所造成的破坏作用。

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