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33S核磁共振光谱法 3. 2-取代乙烷磺酸盐中取代基对33S核磁共振参数的影响。

33S NMR spectroscopy 3. Substituent effects on 33S NMR parameters in 2-substituted ethanesulfonates.

作者信息

Musio Roberta, Sciacovelli Oronzo

机构信息

Istituto C.N.R. di Chimica dei Composti Organo-Metallici-Sezione di Bari, Dipartimento di Chimica, Università degli Studi di Bari, Via E. Orabona 4, 70126 Bari, Italy.

出版信息

Magn Reson Chem. 2006 Aug;44(8):753-60. doi: 10.1002/mrc.1843.

Abstract

33S NMR parameters (chemical shifts and linewidths) in 2-substituted sodium ethanesulfonates, XCH2CH2SO3Na (X = H, CH3, OH, SH, NH2, Cl, Br, NH3+) depend upon the electronic properties of substituents. To explain experimental results and obtain additional information on the origin of the observed substituent effect (SE), sulfur isotropic absolute shielding constants have been calculated at DFT level of theory (B3LYP/6-311++G(2d,p)) by gauge-including atomic orbitals (GIAO) method. Data have been interpreted with the aid of natural bond orbital (NBO) method and natural chemical shielding (NCS) analysis. It has been demonstrated that in the class of compounds considered the diamagnetic contribution to sulfur-shielding constant is constant and the observed upfield shift of 33S resonance induced by electron-withdrawing substituents (reverse chemical shift effect) can be related to variations of the paramagnetic contribution. Substituents with different electronic properties cause variations in the polarization of S-C and S-O bonds of the -C-SO3- moiety thus determining changes of the electron density at sulfur nucleus and consequently the expansion or contraction of 3p sulfur orbitals. Also oxygen lone-pairs and sulfur core 2p electrons can play an active role in determining the paramagnetic contribution to sulfur shielding. With regard to linewidth variations, they can be ascribed primarily to changes in the nuclear quadrupole coupling constant values. B3LYP/6-311++G(2d,p) method allows obtaining a good reproducibility of SE on the electric field gradient (EFG) at sulfur, although its values tend to be underestimated significantly. Moreover, 17O shielding constants have been calculated.

摘要

2-取代乙烷磺酸钠(XCH₂CH₂SO₃Na,X = H、CH₃、OH、SH、NH₂、Cl、Br、NH₃⁺)中的³³S NMR参数(化学位移和线宽)取决于取代基的电子性质。为了解释实验结果并获取有关观察到的取代基效应(SE)起源的更多信息,已通过含规范原子轨道(GIAO)方法在密度泛函理论(DFT)水平(B3LYP/6-311++G(2d,p))计算了硫各向同性绝对屏蔽常数。已借助自然键轨道(NBO)方法和自然化学屏蔽(NCS)分析对数据进行了解释。结果表明,在所考虑的化合物类别中,硫屏蔽常数的抗磁贡献是恒定的,并且由吸电子取代基引起的³³S共振的上移(反向化学位移效应)可能与顺磁贡献的变化有关。具有不同电子性质的取代基会导致-C-SO₃-部分的S-C和S-O键极化发生变化,从而决定硫原子核处电子密度的变化,进而决定3p硫轨道的扩展或收缩。此外,氧孤对电子和硫核心2p电子在确定硫屏蔽的顺磁贡献方面也可以发挥积极作用。关于线宽变化,它们主要可归因于核四极耦合常数的变化。B3LYP/6-311++G(2d,p)方法能够很好地重现硫处电场梯度(EFG)上的SE,尽管其值往往被显著低估。此外,还计算了¹⁷O屏蔽常数。

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