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首页> 外文期刊>Journal of the American Chemical Society >Redox non-innocence of thioether macrocycles: Elucidation of the electronic structures of mononuclear complexes of gold(II) and silver(II)
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Redox non-innocence of thioether macrocycles: Elucidation of the electronic structures of mononuclear complexes of gold(II) and silver(II)

机译:硫醚大环的氧化还原非纯:阐明金(II)和银(II)单核配合物的电子结构

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摘要

The mononuclear +2 oxidation state metal complexes [Au([9]aneS(3))(2)](2+) and [Ag([18]aneS(6))](2+) have been synthesized and characterized crystallographically. The crystal structure of the Au(II) species [Au([9] aneS(3))(2)](BF4)(2) shows a Jahn-Teller tetragonally distorted geometry with Au-S(1) = 2.839(5), Au-S(2) = 2.462(5), and Au-S(3) = 2.452(5) angstrom. The related Ag(II) complex [Ag([18] aneS(6))](ClO4)(2) has been structurally characterized at both 150 and 30 K and is the first structurally characterized complex of Ag(II) with homoleptic thioether S-coordination. The single-crystal X-ray structure of [Ag([18]aneS(6))](ClO4)(2) confirms octahedral homoleptic S-6-thioether coordination. At 150 K, the structure contains two independent Ag(II)-S distances of 2.569(7) and 2.720(6) angstrom. At 30 K, the structure retains two independent Ag(II)-S distances of 2.615(6) and 2.620(6) angstrom, with the complex cation retaining 3-fold symmetry. The electronic structures of [Au([9]aneS(3))(2)](2+) and [Ag([18]aneS(6))](2+) have been probed in depth using multifrequency EPR spectroscopy coupled with DFT calculations. For [Au([9] aneS(3))(2)](2+), the spectra are complex due to large quadrupole coupling to Au-197. Simulation of the multifrequency spectra gives the principal g values, hyperfine (A) and quadrupole (P) couplings, and furthermore reveals non-co-incidence of the principal axes of the P tensor with respect to the A and g matrices. These results are rationalized in terms of the electronic and geometric structure and reveal that the SOMO has ca. 30% Au 5d(xy) character, consistent with DFT calculations (27% Au character). For [Ag([18]aneS(6))](2+), detailed EPR spectroscopic analysis confirms that the SOMO has ca. 26% Ag 4d(xy) character and DFT calculations are consistent with this result (22% Ag character).
机译:已经合成了单核+2氧化态金属配合物[Au([9] aneS(3))(2)](2+)和[Ag([18] aneS(6))](2+),并进行了结晶学表征。 Au(II)物种[Au([9] aneS(3))(2)](BF4)(2)的晶体结构显示了Jahn-Teller四边形扭曲的几何,Au-S(1)= 2.839(5) ),Au-S(2)= 2.462(5)和Au-S(3)= 2.452(5)埃。相关的Ag(II)配合物[Ag([18] aneS(6))](ClO4)(2)在150 K和30 K时都具有结构特征,并且是Ag(II)与均相硫醚的第一个结构特征复合物。 S协调。 [Ag([18] aneS(6))](ClO4)(2)的单晶X射线结构证实了八面体均相S-6-硫醚配位。在150 K时,该结构包含两个独立的Ag(II)-S距离,分别为2.569(7)和2.720(6)埃。在30 K时,该结构保留两个独立的Ag(II)-S距离,分别为2.615(6)和2.620(6)埃,而复杂阳离子保持3倍对称性。 [Au([9] aneS(3))(2)](2+)和[Ag([18] aneS(6))](2+)的电子结构已使用多频EPR光谱进行了深入探测使用DFT计算。对于[Au([9] aneS(3))(2)](2+),由于与Au-197的四极耦合较大,因此光谱很复杂。多频谱的仿真给出了主要的g值,超精细(A)和四极(P)耦合,此外还揭示了P张量的主轴相对于A和g矩阵的非重合。从电子和几何结构方面对这些结果进行了合理化,并揭示了SOMO具有约。 30%Au 5d(xy)字符,与DFT计算一致(27%Au字符)。对于[Ag([18] aneS(6))](2+),详细的EPR光谱分析确认SOMO具有26%Ag 4d(xy)字符和DFT计算与此结果一致(22%Ag字符)。

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