Stoumpos Constantinos C, Gass Ian A, Milios Constantinos J, Lalioti Nikolia, Terzis Aris, Aromí Guillem, Teat Simon J, Brechin Euan K, Perlepes Spyros P
Department of Chemistry, University of Patras, 265 04 Patras, Greece.
Dalton Trans. 2009 Jan 14(2):307-17. doi: 10.1039/b810835h. Epub 2008 Nov 6.
The employment of di-2-pyridyl ketone, (py)2CO, in manganese(II) acetate chemistry is reported. The syntheses, crystal structures and magnetochemical characterisation are described for [MnII4(O2CMe)4{(py)2C(OH)O}4] () and [MnII10MnIII4O4(O2CMe)20{(py)2C(OH)O}4] (), where (py)2C(OH)O- is the monoanion of the gem-diol form of the ligand. The reaction of Mn(O2CMe)(2).4H2O with one equivalent of (py)2CO in Me2CO gives . Complex was obtained from the 1:1 reaction, in EtOH, between Mn(O2CMe)(2).4H2O and (py)2CO in the presence of NEt3. The tetranuclear molecule has a cubane topology with the MnII and the deprotonated oxygen atoms from the eta1:eta3:eta1:micro3 ligands occupying alternate vertices of the cube. The core of consists of two mixed valence cubane {MnII2MnIII2(micro3-O)2(micro3-OR'')2}4+ subunits that are linked through an unusual {MnII6(eta1:eta2:micro-O2CMe)6(eta2:eta2:micro3-O2CMe)2}4+ moiety via twelve eta1:eta1:micro MeCO2- groups. Some suggestions have been made concerning the possible assembly of from . The magnetic properties of in the 300-5 K range have been modelled with two J values, which reveal weak antiferromagnetic interactions within the molecule. Complex has a low spin ground state. This work demonstrates the flexibility, versatility and synthetic potential of combining (py)2CO with carboxylate ligands.
报道了二 - 2 - 吡啶基甲酮((py)₂CO)在乙酸锰(II)化学中的应用。描述了[MnII₄(O₂CMe)₄{(py)₂C(OH)O}₄]()和[MnII₁₀MnIII₄O₄(O₂CMe)₂₀{(py)₂C(OH)O}₄]()的合成、晶体结构和磁化学表征,其中(py)₂C(OH)O⁻是配体偕二醇形式的单阴离子。Mn(O₂CMe)₂·4H₂O与一当量的(py)₂CO在Me₂CO中反应得到。配合物是在NEt₃存在下,由Mn(O₂CMe)₂·4H₂O与(py)₂CO在乙醇中按1:1反应制得。四核分子具有立方烷拓扑结构,MnII和来自η¹:η³:η¹:μ³配体的去质子化氧原子占据立方体的交替顶点。的核心由两个混合价立方烷{MnII₂MnIII₂(μ³ - O)₂(μ³ - OR'')₂}⁴⁺亚基组成,它们通过一个不寻常的{MnII₆(η¹:η²:μ - O₂CMe)₆(η²:η²:μ³ - O₂CMe)₂}⁴⁺部分通过十二个η¹:η¹:μ MeCO₂⁻基团相连。已经对由组装成提出了一些建议。在300 - 5 K范围内的磁性质用两个J值进行了模拟,结果表明分子内存在弱反铁磁相互作用。配合物具有低自旋基态。这项工作证明了将(py)₂CO与羧酸酯配体结合的灵活性、多功能性和合成潜力。