首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Characterization of covalent linkages in organically functionalized MCM-41 mesoporous materials by solid-state NMR and theoretical calculations
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Characterization of covalent linkages in organically functionalized MCM-41 mesoporous materials by solid-state NMR and theoretical calculations

机译:固体核磁共振和理论计算表征有机功能化MCM-41介孔材料中的共价键

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The covalent linkages formed during functionalization of MCM-41 mesoporous molecular sieves with five chloroalkylsilanes ((EtO)(3)Si(CH2Cl), (MeO)(3)Si(CH2CH2CH2Cl), Cl3Si(CH2CH2CH3), Cl2Si(CH3)(CH2Cl) and Cl2Si(CH3)(2)) have been investigated using high-resolution solid-state NMR spectroscopy and DFT calculations. Structural information was obtained from H-1-C-13 and H-1-Si-29 heteronuclear (HETCOR) NMR spectra, in which high resolution in the H-1 dimension was obtained by using fast MAS. The H-1-C-13 HETCOR results provided the assignments of H-1 and C-13 resonances associated with the surface functional groups. Sensitivity-enhanced H-1-Si-29 HETCOR spectra, acquired using Carr-Purcell-Meiboom-Gill refocusing during data acquisition, revealed the identity of Si-29 sites (Q(n), T-n, and D-n) and the location of functional groups relative to these sites. Optimal geometries of local environments representing the Q(n), T-n and D-n resonances were calculated using molecular mechanics and ab initio methods. Subsequently, DFT calculations of Si-29, C-13, and H-1 chemical shifts were performed using Gaussian 03 at the B3LYP/6-311++G(2d,2p) level. The theoretical calculations are in excellent accord with the experimental chemical shifts. This work illustrates that state-of-the-art spectroscopic and theoretical tools can be used jointly to refine the complex structures of inorganic-organic hybrid materials.
机译:在MCM-41介孔分子筛功能化过程中,用五个氯代烷基硅烷((EtO)(3)Si(CH2Cl),(MeO)(3)Si(CH2CH2CH2Cl,Cl3Si(CH2CH2CH3),Cl2Si(CH3)(CH2Cl )和Cl2Si(CH3)(2))已使用高分辨率固态NMR光谱和DFT计算进行了研究。结构信息是从H-1-C-13和H-1-Si-29异核(HETCOR)NMR光谱获得的,其中通过使用快速MAS获得了H-1维的高分辨率。 H-1-C-13 HETCOR结果提供了与表面官能团相关的H-1和C-13共振的分配。在数据采集过程中使用Carr-Purcell-Meiboom-Gill重聚焦获得的灵敏度增强的H-1-Si-29 HETCOR光谱揭示了Si-29位点(Q(n),Tn和Dn)的身份以及相对于这些站点的功能组。使用分子力学和从头算方法计算出代表Q(n),T-n和D-n共振的局部环境的最佳几何形状。随后,使用高斯03在B3LYP / 6-311 ++ G(2d,2p)水平上进行了Si-29,C-13和H-1化学位移的DFT计算。理论计算与实验化学位移非常吻合。这项工作表明,可以结合使用最新的光谱学和理论工具来完善无机-有机杂化材料的复杂结构。

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