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首页> 外文期刊>Magnetic Resonance in Chemistry: MRC >Correlatedab initiocalculations of one-bond(31)P-Se-77 and(31)P-Te-125 spin-spin coupling constants in a series of P(sic)Se and P(sic)Te systems accounting for relativistic effects (part 2)
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Correlatedab initiocalculations of one-bond(31)P-Se-77 and(31)P-Te-125 spin-spin coupling constants in a series of P(sic)Se and P(sic)Te systems accounting for relativistic effects (part 2)

机译:相关联的Anitionab in-键(31)p-Se-77和(31)P-TE-125旋转 - 自旋偶联常数在一系列P(SiC)Se和P(SiC)TE系统中核对相对论效应(部分 2)

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摘要

Synthetic chalcogen-phosphorus chemistry permanently makes new challenges to computational Nuclear Magnetic Resonance (NMR) spectroscopy, which has proven to be a powerful tool of structural analysis of chalcogen-phosphorus compounds. This paper reports on the calculations of one-bond(31)P-Se-77 and(31)P-Te-125 NMR spin-spin coupling constants (SSCCs) in the series of phosphine selenides and tellurides. The applicability of the combined computational approach to the one-bond(31)P-Se-77 and(31)P-Te-125 SSCCs, incorporating the composite nonrelativistic scheme, built of high-accuracy correlated SOPPA (CC2) and Coupled Cluster Single and Double (CCSD) methods and the Density Functional Theory (DFT) relativistic corrections (four-component level), was examined against the experiment and another scheme based on the four-component relativistic DFT method. A specialJ-oriented basis set (acv3z-J) for selenium and tellurium atoms, developed previously by the authors, was used throughout the NMR calculations in this work at the first time. The proposed computational methodologies (combined and 'pure') provided a reasonable accuracy for(31)P-Se-77 and(31)P-Te-125 SSCCs against experimental data, characterizing by the mean absolute percentage errors of about 4% and 1%, and 12% and 8% for selenium and tellurium species, respectively. The present study reports typical relativistic corrections to(77)Se-P-31 and(125)Te-P-31 SSCCs, calculated within the four-component DFT formalism for a broad series of tertiary phosphine selenides and tellurides with different substituents at phosphorus.
机译:合成的硫致原性 - 磷化学永久性地对计算核磁共振(NMR)光谱产生了新的挑战,这已被证明是硫磷化合物的结构分析的强大工具。本文报道了一系列膦硒和碲化物中的单键(31)P-SE-77和(31)P-TE-125 NMR旋转偶联常数(SSCC)的计算。组合计算方法的适用性在一个键合(31)P-SE-77和(31)P-TE-125 SSCC中,包括复合非素描方案,由高精度相关的SOPPA(CC2)和耦合簇构成单一和双(CCSD)方法和密度泛函理论(DFT)相对激烈的校正(四组分水平),基于四组分相对论DFT方法对实验和另一种方案进行检查。在作者之前,在这项工作中,使用了先前由作者开发的Selenium和碲原子的专用基础(ACV3Z-J)。所提出的计算方法(组合和“纯”)为(31)P-SE-77和(31)P-TE-125 SSCCS进行了合理的精度,针对实验数据,其特征在于约4%的平均绝对百分比误差分别为硒和碲物种的1%和12%和8%。本研究报告了典型的相对论校正至(77)SE-P-31和(125)TE-P​​-31 SSCCCS,用于在四组分DFT形式主义内计算,用于宽系列叔膦硒化物和碲化物,在磷中具有不同的取代基。

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