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首页> 外文期刊>Angewandte Chemie >NMR Crystallography: Evaluation of Hydrogen Positions in Hydromagnesite by C-13{H-1} REDOR Solid-State NMR and Density Functional Theory Calculation of Chemical Shielding Tensors
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NMR Crystallography: Evaluation of Hydrogen Positions in Hydromagnesite by C-13{H-1} REDOR Solid-State NMR and Density Functional Theory Calculation of Chemical Shielding Tensors

机译:NMR晶体学:C-13 {H-1} REDOR固态NMR和浓度函数理论计算的氢化物岩中的氢气位置评价化学屏蔽张量

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摘要

Solid-state NMR measurements coupled with density functional theory (DFT) calculations demonstrate how hydrogen positions can be refined in a crystalline system. The precision afforded by rotational-echo double-resonance (REDOR) NMR to interrogate C-13-H-1 distances is exploited along with DFT determinations of the C-13 tensor of carbonates (CO32-). Nearby H-1 nuclei perturb the axial symmetry of the carbonate sites in the hydrated carbonate mineral, hydromagnesite [4MgCO(3)Mg(OH)(2)4H(2)O]. A match between the calculated structure and solid-state NMR was found by testing multiple semi-local and dispersion-corrected DFT functionals and applying them to optimize atom positions, starting from X-ray diffraction (XRD)-determined atomic coordinates. This was validated by comparing calculated to experimental C-13{H-1} REDOR and C-13 chemical shift anisotropy (CSA) tensor values. The results show that the combination of solid-state NMR, XRD, and DFT can improve structure refinement for hydrated materials.
机译:固态NMR测量与密度泛函理论(DFT)计算耦合,表明如何在结晶系统中精制氢位置。通过旋转回波双谐​​振(REDOR)NMR询问C-13-H-1距离的精度以及DFT测定的C-13碳酸酯(CO32-)。附近的H-1核扰动水合碳酸盐矿物质中碳酸盐位点的轴对称,水质岩[4mgCO(3)mg(OH)(2)4H(2)O]。通过测试多个半局部和色散校正的DFT功能并将它们应用于从X射线衍射(XRD) - 确定原子坐标开始,通过测试多个半局部和色散校正的DFT功能来发现计算的结构和固态NMR之间的匹配。通过对实验C-13 {H-1} REDOR和C-13化学变换各向异性(CSA)张量值进行比较来验证这一点。结果表明,固态NMR,XRD和DFT的组合可以改善水合材料的结构细化。

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