首页> 外文期刊>Magnetic Resonance in Chemistry: MRC >H-1 chemical shifts in NMR. Part 20 - Anisotropic and steric effects in halogen substituent chemical shifts (SCS), a modelling and ab initio investigation
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H-1 chemical shifts in NMR. Part 20 - Anisotropic and steric effects in halogen substituent chemical shifts (SCS), a modelling and ab initio investigation

机译:NMR中的H-1化学位移。第20部分-卤素取代基化学位移(SCS)中的各向异性和空间效应,建模和从头开始研究

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The H-1 NMR spectra of 1-halonaphthalenes were recorded and assigned. These data together with the known H-1 chemical shifts of the halobenzenes and of H-5 in 4-halophenanthrenes were used to investigate different models of halogen SCS using the CHARGE program. Good agreement was obtained with the observed shifts for the fluoro compounds, but a new model which included the anisotropy of the C - X bond (X=Cl, Br, I) and steric and electric field effects was required to give an accurate description of the observed chemical shifts for the other halogens. A previous observation of an anomalous H-1 SCS on the meta protons in halobenzenes was further investigated using the 1-halonaphthalenes plus the observed 1H shifts of a number of 2-substituted bromobenzenes. The meta SCS of the bromo substituent in the bromobenzenes was only observed on H-5. When a substituent was attached to C-2, H-3 showed no appreciable effect. This remarkable effect was investigated by CHARGE and GIAO calculations and shown to be due to the pi-electron system. It was reproduced in CHARGE as a gamma effect from the C - X carbon atom. The observed 1H chemical shifts in the above compounds were compared with those calculated by CHARGE, the GIAO technique and by the ACD database program. The recommended ab initio basis set for the iodo compounds (Lan12DZ) gave very poor calculated shifts, which suggests that H-1 chemical shifts of fourth-row atoms when calculated with the GIAO technique should be viewed with caution. In contrast, the recommended 6-31G** basis set with the B3LYP technique in the Gaussian98 program gave calculated values in reasonable agreement with the observed data, as did the ACD package. These different prediction methods were compared by pie charts, scatter plots and r.m.s. errors and the CHARGE program was shown to be more accurate for the compounds considered here than the other two methods. The different philosophies of these programs are discussed together with the results obtained. Copyright (C) 2004 John Wiley Sons, Ltd.
机译:记录并指定了1-卤代萘的H-1 NMR光谱。这些数据与卤代苯和H-5在4-卤代菲中的已知H-1化学位移一起,用于使用CHARGE程序研究卤素SCS的不同模型。对于氟化合物的观察到的位移获得了良好的一致性,但是需要一个新的模型,其中包括C-X键的各向异性(X = Cl,Br,I)以及空间和电场效应,才能对氟化合物进行准确描述。观察到的其他卤素的化学位移。使用1-卤代萘加上观察到的许多2-取代溴苯的1H位移,进一步研究了卤代苯中质子上H-1 SCS异常的观察结果。仅在H-5上观察到溴苯中溴取代基的间位SCS。当取代基连接到C-2上时,H-3没有显示出明显的作用。通过CHARGE和GIAO计算研究了这种显着效果,并证明是由于pi电子系统引起的。它是由C-X碳原子以伽马效应在CHARGE中复制的。将上述化合物中观察到的1H化学位移与CHARGE,GIAO技术和ACD数据库程序计算出的1H化学位移进行了比较。碘化合物(Lan12DZ)的建议的从头算基础设置提供的计算位移非常差,这建议当使用GIAO技术计算时,第四行原子的H-1化学位移应谨慎对待。相比之下,在Gaussian98程序中使用B3LYP技术推荐的6-31G **基准集,与ACD软件包一样,给出的计算值与观察到的数据合理地吻合。通过饼图,散点图和r.m.s比较了这些不同的预测方法。错误和CHARGE程序对于此处考虑的化合物而言比其他两种方法更准确。讨论了这些程序的不同原理以及获得的结果。版权所有(C)2004 John Wiley Sons,Ltd.

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