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含两个双齿π-自由基单阴离子的镍(II)抗磁性配合物中的平面正方形与四面体配位

Square planar vs tetrahedral coordination in diamagnetic complexes of nickel(II) containing two bidentate pi-radical monoanions.

作者信息

Blanchard Sebastien, Neese Frank, Bothe Eberhard, Bill Eckhard, Weyhermüller Thomas, Wieghardt Karl

机构信息

Max-Planck-Institut für Bioanorganische Chemie, Mülheim an der Ruhr, Germany.

出版信息

Inorg Chem. 2005 May 16;44(10):3636-56. doi: 10.1021/ic040117e.

Abstract

The reaction of three different 1-phenyl and 1,4-diphenyl substituted S-methylisothiosemicarbazides, H(2)[L(1-6)], with Ni(OAc)(2).4H(2)O in ethanol in the presence of air yields six four-coordinate species [Ni(L(1-6)())(2)] (1-6) where (L(1-6)())(1-) represent the monoanionic pi-radical forms. The crystal structures of the nickel complexes with 1-phenyl derivatives as in 1 reveal a square planar structure trans-[Ni(L(1)(-3)())(2)], whereas the corresponding 1,4-diphenyl derivatives are distorted tetrahedral as is demonstrated by X-ray crystallography of [Ni(L(5)())(2)] (5) and [Ni(L(6)(*))(2)] (6). Both series of mononuclear complexes possess a diamagnetic ground state. The electronic structures of both series have been elucidated experimentally (electronic spectra magnetization data). The square planar complexes 1-3 consist of a diamagnetic central Ni(II) ion and two strongly antiferromagnetically coupled ligand pi-radicals as has been deduced from correlated ab initio calculations; they are singlet diradicals. The tetrahedral complexes 4-6 consist of a paramagnetic high-spin Ni(II) ion (S(Ni) = 1), which is strongly antiferromagnetically coupled to two ligand pi-radicals. This is clearly revealed by DFT and correlated ab initio calculations. Electrochemically, complexes 1-6 can be reduced to form stable, paramagnetic monoanions 1-6 (S = (1)/(2)). The anions 1-3 are square planar Ni(II) (d,(8) S(Ni) = 0) species where the excess electron is delocalized over both ligands (class III, ligand mixed valency). In contrast, one-electron reduction of 4, 5, and 6 yields paramagnetic tetrahedral monoanions (S = (1)/(2)). X-band EPR spectroscopy shows that there are two different isomers A and B of each monoanion present in solution. In these anions, the excess electron is localized on one ligand Ni(II)(L(4-6)(*))(L(4-6)) where (L(4-6))(2-) is the closed shell dianion of the ligands H(2)[L(4-6)] as was deduced from their electronic spectra and broken symmetry DFT calculations. Oxidation of 1 and 5 with excess iodine yields octahedral complexes [Ni(II)(L(1,ox))(2)I(2)] (7), Ni(II)(L(1,ox))(3)(2) (8), and trans-[Ni(II)(L(5,ox))(2)(I(3))(2)] (9), which have been characterized by X-ray crystallography; (L(1-)(6,ox)) represent the neutral, two-electron oxidized forms of the corresponding dianions (L(1-6))(2-). The room-temperature structures of complexes 1, 5, and 7 have been described previously in refs 1-5.

摘要

三种不同的1-苯基和1,4-二苯基取代的S-甲基异硫脲鎓盐H(2)[L(1 - 6)]与Ni(OAc)(2).4H(2)O在乙醇中于空气存在下反应,生成六个四配位物种[Ni(L(1 - 6)())(2)] (1 - 6),其中(L(1 - 6)())(1-)代表单阴离子π-自由基形式。如1中所示,镍与1-苯基衍生物形成的配合物的晶体结构显示为反式-[Ni(L(1)(-3)())(2)]的平面正方形结构,而相应的1,4-二苯基衍生物则为扭曲的四面体结构,这通过[Ni(L(5)())(2)] (5)和[Ni(L(6)(*))(2)] (6)的X射线晶体学得以证明。这两个系列的单核配合物都具有抗磁性基态。这两个系列的电子结构已通过实验(电子光谱、磁化数据)得以阐明。平面正方形配合物1 - 3由抗磁性的中心Ni(II)离子和两个强反铁磁耦合的配体π-自由基组成,这是通过相关的从头算计算推导出来的;它们是单重态双自由基。四面体配合物4 - 6由顺磁性的高自旋Ni(II)离子(S(Ni) = 1)组成,该离子与两个配体π-自由基强反铁磁耦合。这通过DFT和相关的从头算计算得以明确揭示。在电化学方面,配合物1 - 6可以被还原形成稳定的顺磁性单阴离子1 - 6(S = (1)/(2))。阴离子1 - 3是平面正方形的Ni(II)(d,(8) S(Ni) = 0)物种,其中多余的电子在两个配体上离域(III类,配体混合价态)。相比之下,4、5和6的单电子还原产生顺磁性的四面体单阴离子(S = (1)/(2))。X波段EPR光谱表明,溶液中每个单阴离子存在两种不同的异构体A和B。在这些阴离子中,多余的电子定域在一个配体Ni(II)(L(4 - 6)(*))(L(4 - 6))上,其中(L(4 - 6))(2-)是配体H(2)[L(4 - 6)]的闭壳层二价阴离子,这是从它们的电子光谱和破缺对称性DFT计算推导出来的。用过量碘氧化1和5得到八面体配合物[Ni(II)(L(1,ox))(2)I(2)] (7)、Ni(II)(L(1,ox))(3)(2) (8)和反式-[Ni(II)(L(5,ox))(2)(I(3))(2)] (9),它们已通过X射线晶体学进行了表征;(L(1 -)(6,ox))代表相应二价阴离子(L(1 - 6))(2-)的中性、双电子氧化形式。配合物1、5和7的室温结构先前已在参考文献1 - 5中描述过。

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