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首页> 外文期刊>Journal of the American Chemical Society >U(SMes*)(n), (n=3, 4) and Ln(SMes*)(3) (Ln = La, Ce, Pr, Nd): Lanthanide(III)/actinide(III) differentiation in agostic interactions and an unprecedented eta(3) Ligation mode of the arylthiolate ligand, from x-ray diffraction and DFT analysis - art. n
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U(SMes*)(n), (n=3, 4) and Ln(SMes*)(3) (Ln = La, Ce, Pr, Nd): Lanthanide(III)/actinide(III) differentiation in agostic interactions and an unprecedented eta(3) Ligation mode of the arylthiolate ligand, from x-ray diffraction and DFT analysis - art. n

机译:U(SMes *)(n),(n = 3、4)和Ln(SMes *)(3)(Ln = La,Ce,Pr,Nd):镧系元素(III)/ act系元素(III)的区分以及X射线衍射和DFT分析得出的芳基硫醇盐配体前所未有的eta(3)连接模式-art。 ñ

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摘要

Reaction of U(NEt2)(4) with HS-2,4,6-(Bu3C6H2)-Bu-t (HSMes*) gave U(SMes*)(3)(NEt2)(py) (1), whereas similar treatment of U[N(SiMe3)SiMe2CH2][N(SiMe3)(2)](2) afforded U( SMes*)[ N( SiMe3) 2] 3 ( 2) and U(SMes*)(3)[N(SiMe3)(2)]. The first neutral homoleptic uranium(IV) thiolate to have been crystallographically characterized, U(SMes*)(4) (4), was isolated from the reaction of U(BH4)(4) and KSMes*. The first homoleptic thiolate complex of uranium(III), U(SMes*)(3) (5), was synthesized by protonolysis of U[N(SiMe3)(2)](3) with HSMes* in cyclohexane. The crystal structure of 5 exhibits the novel eta(3) ligation mode for the arylthiolate ligand. Comparison of the crystal structure of 5 with those of the isomorphous lanthanide congeners Ln(SMes*)(3) (Ln) La, Ce, Pr, and Nd) indicates that the U-S, U-C-ipso, and U-C ortho bond lengths are shorter than the corresponding ones in the 4f-element analogues, when taking into account the variation in the ionic radii of the metals. The distance between the uranium and the carbon atoms involved in the U center dot center dot center dot H-C epsilon agostic interaction of each thiolate ligand is shorter, by similar to 0.05 angstrom, than that expected from a purely ionic bonding model. The lanthanide( III)/actinide(III) differentiation was analyzed by density functional theory (DFT). The nature of the M-S bond is shown to be ionic strongly polarized at the sulfur for M) U and iono-covalent (i.e. strongly ionic with low orbital interaction), for M) Ln. The strength of the U center dot center dot center dot H-C epsilon agostic interaction is proposed to be controlled by the maximization of the interaction between U+ and S- under steric constraints. The eta(3) ligation mode of the arylthiolate ligand is also obtained from DFT.
机译:U(NEt2)(4)与HS-2,4,6-(Bu3C6H2)-Bu-t(HSMes *)反应得到U(SMes *)(3)(NEt2)(py)(1) U [N(SiMe3)SiMe2CH2] [N(SiMe3)(2)](2)的处理得到U(SMes *)[N(SiMe3)2] 3(2)和U(SMes *)(3)[N (SiMe3)(2)]。从U(BH4)(4)和KSMes *的反应中分离出第一个具有结晶学特征的中性均相铀(IV)硫醇盐U(SMes *)(4)(4)。通过在环己烷中用HSMes *对U [N(SiMe3)(2)](3)进行质子分解,合成了铀(III)的第一个均相硫醇盐络合物U(SMes *)(3)(5)。 5的晶体结构展示了芳硫醇盐配体的新型eta(3)连接模式。将5的晶体结构与同构镧系元素同质物Ln(SMes *)(3)(Ln)La,Ce,Pr和Nd的晶体结构进行比较表明,US,UC-ipso和UC邻键长度较短考虑到金属离子半径的变化,它比4f元素类似物中的相应离子要大。铀与每个硫醇盐配体的U中心点中心点中心点H-Cε原子交错相互作用中涉及的碳原子之间的距离,比纯离子键合模型所预期的要短0.05埃。通过密度泛函理论(DFT)分析了镧系元素(Ⅲ)/ act系元素(III)的分化。对于M)U,M-S键的性质显示为在硫上离子强极化,对于M)Ln,离子共价(即,具有低轨道相互作用的强离子)。建议在空间约束下,通过最大化U +和S-之间的相互作用来控制U中心点中心点中心点H-Cε异质相互作用。芳基硫醇盐配体的eta(3)连接模式也可从DFT获得。

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