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首页> 外文期刊>Chemistry: A European journal >Preparation of bifunctional mesoporous silica nanoparticles by orthogonal click reactions and their application in cooperative catalysis
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Preparation of bifunctional mesoporous silica nanoparticles by orthogonal click reactions and their application in cooperative catalysis

机译:正交点击反应制备双功能介孔二氧化硅纳米粒子及其在协同催化中的应用

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摘要

The synthesis of bifunctional mesoporous silica nanoparticles is described. Two chemically orthogonal functionalities are incorporated into mesoporous silica by co-condensation of tetraethoxysilane with two orthogonally functionalized triethoxyalkylsilanes. Post-functionalization is achieved by orthogonal surface chemistry. A thiol-ene reaction, Cu-catalyzed 1,3-dipolar alkyne/azide cycloaddition, and a radical nitroxide exchange reaction are used as orthogonal processes to install two functionalities at the surface that differ in reactivity. Preparation of mesoporous silica nanoparticles bearing acidic and basic sites by this approach is discussed. Particles are analyzed by solid state NMR spectroscopy, elemental analysis, infrared-spectroscopy, and scanning electron microscopy. As a first application, these particles are successfully used as cooperative catalysts in the Henry reaction. Cooperative clicking: Bifunctional mesoporous silica particles were synthesized by orthogonal surface chemistry. A thiol-ene reaction, a copper-catalyzed 1,3-dipolar cycloaddition and a radical nitroxide exchange reaction were used as orthogonal processes for the introduction of the acid and base functionalities (see scheme). Catalytic activities of these bifunctionalized inorganic/organic hybrid materials were studied on the Henry reaction.
机译:描述了双功能介孔二氧化硅纳米粒子的合成。通过将四乙氧基硅烷与两个正交官能化的三乙氧基烷基硅烷共缩合,将两个化学正交的官能度引入介孔二氧化硅中。后官能化是通过正交表面化学实现的。硫醇-烯反应,Cu催化的1,3-偶极炔烃/叠氮化物环加成反应和自由基氮氧化物交换反应被用作正交过程,以在表面上安装两个反应性不同的官能团。讨论了通过这种方法制备带有酸性和碱性位点的介孔二氧化硅纳米粒子。通过固态NMR光谱,元素分析,红外光谱和扫描电子显微镜分析颗粒。作为首次应用,这些颗粒已成功用作亨利反应中的协同催化剂。协同点击:通过正交表面化学合成了双功能介孔二氧化硅颗粒。硫醇-烯反应,铜催化的1,3-偶极环加成反应和自由基一氧化氮交换反应被用作引入酸和碱官能团的正交方法(参见方案)。在亨利反应中研究了这些双官能化的无机/有机杂化材料的催化活性。

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