Nguyen Tailuan, Panda Arunashree, Olmstead Marilyn M, Richards Anne F, Stender Mathias, Brynda Marcin, Power Philip P
Department of Chemistry, One Shields Avenue, University of California, Davis, CA 95616, USA.
J Am Chem Soc. 2005 Jun 15;127(23):8545-52. doi: 10.1021/ja042958q.
A sequence of first row transition metal(II) dithiolates M(SAr)(2) (M = Cr(1), Mn(2), Fe(3), Co(4), Ni(5) and Zn(6); Ar = C(6)H(3)-2,6-(C(6)H(2)-2,4,6-Pr(i)(3))(2)) has been synthesized and characterized. Compounds 1-5 were obtained by the reaction of two equiv of LiSAr with a metal dihalide, whereas 6 was obtained by treatment of ZnMe(2) with 2 equiv of HSAr. They were characterized by spectroscopy, magnetic measurements, and X-ray crystallography. The dithiolates 1, 2, and 4-6 possess linear or nearly linear SMS units with further interactions between M and two ipso carbons from C(6)H(2)-2,4,6-Pr(i)(3) rings. The iron species 3, however, has a bent geometry, two different Fe-S distances, and an interaction between iron and one ipso carbon of a flanking ring. The secondary M-C interactions vary in strength in the sequence Cr(2+) approximately Fe(2+) > Co(2+) approximately Ni(2+) > Mn(2+) approximately Zn(2+) such that the manganese and zinc compounds have essentially two coordination but the chromium and iron complexes are quasi four and three coordinate, respectively. The geometric distortions in the iron species 3 suggested that the structure represents the initial stage of a rearrangement into a sandwich structure involving metal-aryl ring coordination. The bent structure of 3 probably also precludes the observation of free ion magnetism of Fe(2+) recently reported for Fe{C(SiMe(3))(3)}(2). DFT calculations on the model compounds M(SPh)(2) (M = Cr-Ni) support the higher tendency of the iron species to distort its geometry.
已合成并表征了一系列第一行过渡金属(II)二硫醇盐M(SAr)₂(M = Cr(1)、Mn(2)、Fe(3)、Co(4)、Ni(5)和Zn(6);Ar = C₆H₃ - 2,6 - (C₆H₂ - 2,4,6 - Prⁱ₃)₂)。化合物1 - 5是通过两当量的LiSAr与金属二卤化物反应得到的,而6是通过用两当量的HSAr处理ZnMe₂得到的。它们通过光谱学、磁性测量和X射线晶体学进行了表征。二硫醇盐1、2和4 - 6具有线性或接近线性的SMS单元,M与来自C₆H₂ - 2,4,6 - Prⁱ₃环的两个本位碳之间存在进一步的相互作用。然而,铁物种3具有弯曲的几何形状、两个不同的Fe - S距离,并且铁与一个侧翼环的本位碳之间存在相互作用。二级M - C相互作用的强度按Cr²⁺≈Fe²⁺>Co²⁺≈Ni²⁺>Mn²⁺≈Zn²⁺的顺序变化,使得锰和锌化合物基本上具有二配位,但铬和铁配合物分别为准四配位和三配位。铁物种3中的几何畸变表明该结构代表了重排为涉及金属 - 芳基环配位的夹心结构的初始阶段。3的弯曲结构可能也排除了最近报道的Fe{C(SiMe₃)₃}₂中Fe²⁺的自由离子磁性的观察。对模型化合物M(SPh)₂(M = Cr - Ni)的DFT计算支持了铁物种使其几何形状畸变的更高倾向。