Casado M A, Pérez-Torrente J J, López J A, Ciriano M A, Alonso P J, Lahoz F J, Oro L A
Departamento de Química Inorgánica, Instituto de Ciencia de Materiales de Aragón, Universidad de Zaragoza-CSIC, E-50009 Zaragoza, Spain.
Inorg Chem. 2001 Aug 27;40(18):4785-92. doi: 10.1021/ic001349q.
The tetranuclear complexes [M4(mu-PyS2)2(diolefin)4] [PyS2 = 2,6-pyridinedithiolate; M = Rh, diolefin = cod (1,5-cyclooctadiene) (1), tfbb (tetrafluorobenzo[5,6]bicyclo[2.2.2]octa-2,5,7-triene) (2); M = Ir, diolefin = cod (3), tfbb (4)] exhibit two one-electron oxidations at a platinum disk electrode in dichloromethane at potentials accessible by chemical reagents. The rhodium tetranuclear complexes were selectively oxidized to the monocationic complexes Rh4(mu-PyS2)2(diolefin)4 (1(+), 2(+)) by mild one-electron oxidants such as Cp2Fe or N(C6H4Br-4)3 and isolated as the PF6(-), BF4(-), and ClO4(-) salts. Silver salts behave as noninnocent one-electron oxidants for the reactions with the rhodium complexes 1 and 2 since they give sparingly soluble coordination polymers. The complex Ir4(mu-PyS2)2(cod)4 (3(+)) was obtained as the tetrafluoroborate salt by reaction of 3 with 1 molar equiv of AgBF4, but the related complex 4(+) could not be isolated from the chemical oxidation of [Ir4(mu-PyS2)2(tfbb)4] (4) with AgBF4. Oxidation of 3 and 4 with 2 molar equiv of common silver salts resulted in the fragmentation of the complexes to give the diamagnetic triiridium cations Ir3(mu-PyS2)2(diolefin)3. The molecular structure of [Ir3(mu-PyS2)2(cod)3]BF4, determined by X-ray diffraction methods, showed the three metal atoms within an angular arrangement. Both 2,6-pyridinedithiolate tridentate ligands bridge two metal-metal bonded d(7) centers in pseudo octahedral environments and one d(8) square-planar iridium center. An interpretation of the EPR spectra of the 63-electron mixed-valence paramagnetic tetranuclear complexes suggests that the unpaired electron is delocalized over two of the metal atoms in the complexes 1(+)-3(+).
四核配合物[M4(μ-PyS2)2(二烯烃)4][PyS2 = 2,6 - 吡啶二硫醇盐;M = Rh,二烯烃 = cod(1,5 - 环辛二烯)(1),tfbb(四氟苯并[5,6]二环[2.2.2]辛 - 2,5,7 - 三烯)(2);M = Ir,二烯烃 = cod(3),tfbb(4)]在二氯甲烷中于铂盘电极上,在化学试剂可及的电位下呈现两个单电子氧化过程。铑四核配合物可通过温和的单电子氧化剂如Cp2Fe或N(C6H4Br - 4)3选择性地氧化为单核阳离子配合物Rh4(μ-PyS2)2(二烯烃)4(1(+),2(+)),并分离得到PF6(-)、BF4(-)和ClO4(-)盐。银盐对于与铑配合物1和2的反应表现为非惰性单电子氧化剂,因为它们生成微溶的配位聚合物。配合物Ir4(μ-PyS2)2(cod)4(3(+))通过3与1摩尔当量的AgBF4反应以四氟硼酸盐形式得到,但相关配合物4(+)无法从Ir4(μ-PyS2)2(tfbb)4与AgBF4的化学氧化反应中分离出来。用2摩尔当量的常见银盐氧化3和4导致配合物碎片化,生成抗磁性的三铱阳离子Ir3(μ-PyS2)2(二烯烃)3。通过X射线衍射方法测定的[Ir3(μ-PyS2)2(cod)3]BF4的分子结构显示三个金属原子呈角形排列。2,6 - 吡啶二硫醇盐三齿配体在伪八面体环境中桥连两个金属 - 金属键合的d(7)中心和一个d(8)平面正方形铱中心。对63电子混合价顺磁性四核配合物的电子顺磁共振光谱的解释表明,未成对电子在配合物1(+) - 3(+)中的两个金属原子上离域。