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高铼酸盐和 Re2(CO)10 的固态(185/187)Re NMR 及 GIPAW DFT 研究:化学位移各向异性、NMR 晶体学与金属-金属键

Solid-state (185/187)Re NMR and GIPAW DFT study of perrhenates and Re2(CO)10: chemical shift anisotropy, NMR crystallography, and a metal-metal bond.

作者信息

Widdifield Cory M, Perras Frédéric A, Bryce David L

机构信息

Department of Chemistry and Centre for Catalysis Research and Innovation, University of Ottawa, 10 Marie Curie Pvt., Ottawa, Ontario, Canada.

出版信息

Phys Chem Chem Phys. 2015 Apr 21;17(15):10118-34. doi: 10.1039/c5cp00602c.

Abstract

Advances in solid-state nuclear magnetic resonance (SSNMR) methods, such as dynamic nuclear polarization (DNP), intricate pulse sequences, and increased applied magnetic fields, allow for the study of systems which even very recently would be impractical. However, SSNMR methods using certain quadrupolar probe nuclei (i.e., I > 1/2), such as (185/187)Re remain far from fully developed due to the exceedingly strong interaction between the quadrupole moment of these nuclei and local electric field gradients (EFGs). We present a detailed high-field (B0 = 21.1 T) experimental SSNMR study on several perrhenates (KReO4, AgReO4, Ca(ReO4)2·2H2O), as well as ReO3 and Re2(CO)10. We propose solid ReO3 as a new rhenium SSNMR chemical shift standard due to its reproducible and sharp (185/187)Re NMR resonances. We show that for KReO4, previously poorly understood high-order quadrupole-induced effects (HOQIE) on the satellite transitions can be used to measure the EFG tensor asymmetry (i.e., ηQ) to nearly an order-of-magnitude greater precision than competing SSNMR and nuclear quadrupole resonance (NQR) approaches. Samples of AgReO4 and Ca(ReO4)2·2H2O enable us to comment on the effects of counter-ions and hydration upon Re(vii) chemical shifts. Calcium-43 and (185/187)Re NMR tensor parameters allow us to conclude that two proposed crystal structures for Ca(ReO4)2·2H2O, which would be considered as distinct, are in fact the same structure. Study of Re2(CO)10 provides insights into the effects of Re-Re bonding on the rhenium NMR tensor parameters and rhenium oxidation state on the Re chemical shift value. As overtone NQR experiments allowed us to precisely measure the (185/187)Re EFG tensor of Re2(CO)10, we were able to measure rhenium chemical shift anisotropy (CSA) for the first time in a powdered sample. Experimental observations are supported by gauge-including projector augmented-wave (GIPAW) density functional theory (DFT) calculations, with NMR tensor calculations also provided for NH4ReO4, NaReO4 and RbReO4. These calculations are able to reproduce many of the experimental trends in rhenium δiso values and EFG tensor magnitudes. Using KReO4 as a prototypical perrhenate-containing system, we establish a correlation between the tetrahedral shear strain parameter (|ψ|) and the nuclear electric quadrupolar coupling constant (CQ), which enables the refinement of the structure of ND4ReO4. Shortcomings in traditional DFT approaches, even when including relativistic effects via the zeroth-order regular approximation (ZORA), for calculating rhenium NMR tensor parameters are identified for Re2(CO)10.

摘要

固态核磁共振(SSNMR)方法取得了进展,如动态核极化(DNP)、复杂脉冲序列以及增加的外加磁场,使得对即使在最近仍不切实际的系统进行研究成为可能。然而,使用某些四极探针核(即I > 1/2)的SSNMR方法,如(185/187)Re,由于这些核的四极矩与局部电场梯度(EFGs)之间极其强烈的相互作用,仍远未得到充分发展。我们对几种高铼酸盐(KReO4、AgReO4、Ca(ReO4)2·2H2O)以及ReO3和Re2(CO)10进行了详细的高场(B0 = 21.1 T)实验SSNMR研究。我们提出固态ReO3作为一种新的铼SSNMR化学位移标准,因为它具有可重现且尖锐的(185/187)Re NMR共振。我们表明,对于KReO4,以前对卫星跃迁上理解不足的高阶四极诱导效应(HOQIE)可用于测量EFG张量不对称性(即ηQ),其精度比竞争的SSNMR和核四极共振(NQR)方法高出近一个数量级。AgReO4和Ca(ReO4)2·2H2O的样品使我们能够评论抗衡离子和水合作用对Re(vii)化学位移的影响。钙 - 43和(185/187)Re NMR张量参数使我们能够得出结论,Ca(ReO4)2·2H2O的两种提出的晶体结构,尽管之前被认为是不同的,但实际上是相同的结构。对Re2(CO)10的研究提供了关于Re - Re键对铼NMR张量参数的影响以及铼氧化态对Re化学位移值的影响的见解。由于泛音NQR实验使我们能够精确测量Re2(CO)10的(185/187)Re EFG张量,我们首次在粉末样品中测量了铼化学位移各向异性(CSA)。实验观察结果得到了包含规范的投影增强波(GIPAW)密度泛函理论(DFT)计算的支持,同时还提供了NH4ReO4、NaReO4和RbReO4的NMR张量计算。这些计算能够重现铼δiso值和EFG张量大小的许多实验趋势。使用KReO4作为含高铼酸盐系统的原型,我们建立了四面体剪切应变参数(|ψ|)与核电四极耦合常数(CQ)之间的相关性,这使得能够细化ND4ReO4的结构。对于Re2(CO)10,我们确定了传统DFT方法在计算铼NMR张量参数时的缺点,即使通过零阶正则近似(ZORA)包含相对论效应也是如此。

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