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首页> 外文期刊>Magnetic Resonance in Chemistry: MRC >Analyzing Pt chemical shifts calculated from relativistic density functional theory using localized orbitals: The role of Pt 5d lone pairs
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Analyzing Pt chemical shifts calculated from relativistic density functional theory using localized orbitals: The role of Pt 5d lone pairs

机译:使用局部轨道分析从相对论密度泛函理论计算得出的Pt化学位移:Pt 5d孤对的作用

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Pt chemical shifts were calculated from two-component relativistic density functional theory (DFT). The shielding tensors were analyzed by using a recently developed method to decompose the spin-orbit DFT results into contributions from spin-free localized orbitals (here: natural localized molecular orbitals (NLMOs) and natural bond orbitals MOO). Seven chemical shifts in six Pt complexes with Pt oxidation states II, III, and IV; and halide, amino, and amidate ligands were analyzed, with particular focus on the role of nonbonding Pt 5d orbitals. A simple d-orbital 'rotation' model has been used to rationalize some of the observed trends such as the main difference between Pt(II) and Pt(IV) chemical shifts. The localized orbital analysis data showed that most of this difference as well as trends among different Pt complexes with similar coordination can be rationalized by comparing properties of the nonbonding Pt 5d orbitals. We have also analyzed the spin-orbit effects on the chemical shifts of [PtCl4](2-) compared to [PtBr4](2-).
机译:根据两成分相对论密度泛函理论(DFT)计算了Pt化学位移。通过使用最新开发的方法将自旋轨道DFT分解为无自旋局部轨道(此处为自然局部分子轨道(NLMO)和自然键轨道MOO)的贡献,来分析屏蔽张量。六种具有Pt氧化态II,III和IV的Pt配合物中的七个化学位移;并分析了卤化物,氨基和酰胺化物的配体,特别着重于非键Pt 5d轨道的作用。一个简单的d轨道“旋转”模型已用于合理化一些观察到的趋势,例如Pt(II)和Pt(IV)化学位移之间的主要差异。局部轨道分析数据表明,通过比较非键合Pt 5d轨道的性质,可以合理地协调大多数这种差异以及具有相似配位的不同Pt配合物之间的趋势。我们还分析了与[PtBr4](2-)相比,自旋轨道对[PtCl4](2-)的化学位移的影响。

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