Milios Constantinos J, Kyritsis Panayotis, Raptopoulou Catherine P, Terzis Aris, Vicente Ramon, Escuer Albert, Perlepes Spyros P
Department of Chemistry, University of Patras, Greece.
Dalton Trans. 2005 Feb 7(3):501-11. doi: 10.1039/b412355g. Epub 2005 Jan 5.
The use of di-2-pyridyl ketone oxime, (py)2CNOH, in manganese carboxylate chemistry has been investigated. Using a variety of synthetic routes complexes [Mn(O2CPh)2{(py)2CNOH}2].0.25H2O (1.0.25H2O), Mn4(O2CPh)2{(py)2CO2}2{(py)2CNO}2Br2].MeCN (2.MeCN), [Mn4(O2CPh)2{(py)2CO2}2{(py)2CNO}2Cl(2)].2MeCN (3.2MeCN), [Mn4(O2CMe)2{(py)2CO2}2{(py)2CNO}2Br2].2MeCN (4.2MeCN), [Mn4(O2CMe)2{(py)2CO2}2{(py)2CNO}2(NO3)2].MeCN.H2O (5.MeCN.H2O) and [Mn2(O2CCF3)2(hfac)2{(py)2CNOH}2] (6) have been isolated in good yields. Remarkable features of the reactions are the in situ transformation of an amount of (py)2CNOH to yield the coordination dianion, (py)2CO2(2-), of the gem-diol derivative of di-2-pyridyl ketone in 2-5, the coordination of nitrate ligands in 5 although the starting materials are nitrate-free and the incorporation of CF3CO2- ligands 6 in which was prepared from Mn(hfac)(2).3H2O (hfac(-)= hexafluoroacetylacetonate). Complexes 2-4 have completely analogous molecular structures. The centrosymmetric tetranuclear molecule contains two MnII and two MnIII six-coordinate ions held together by four mu-oxygen atoms from the two 3.2211 (py)2CO2(2-) ligands to give the unprecedented [MnII(mu-OR)MnIII(mu-OR)2MnIII(mu-OR)MnII]6+ core consisting of a planar zig-zag array of the four metal ions. Peripheral ligation is provided by two 2.111 (py)2CNO-, two 2.11 PhCO2- and two terminal Br- ligands. The overall molecular structure 5 of is very similar to that of 2-4 except for the X- being chelating NO3-. A tentative reaction scheme was proposed that explains the observed oxime transformation and nitrate generation. The CF3CO2- ligand is one of the decomposition products of the hfac- ligand. The two Mn(II) ions are bridged by two neutral (py)2CNOH ligands which adopt the 2.0111 coordination mode. A chelating hfac- ligand and a terminal CF3CO2- ion complete a distorted octahedral geometry at each metal ion. The CV of complex reveals irreversible reduction and oxidation processes. Variable-temperature magnetic susceptibility studies in the 2-300 K range for the representative tetranuclear clusters 2 and 4 reveal weak antiferromagnetic exchange interactions, leading to non-magnetic ST = 0 ground states. Best-fit parameters obtained by means of the program CLUMAG and applying the appropriate Hamiltonian are J(Mn(II)Mn((III))=-1.7 (2), -1.5 (4) cm(-1) and J(Mn(III)Mn(III))=-3.0 (2, 4) cm(-1).
已对二 - 2 - 吡啶基甲酮肟((py)₂CNOH)在羧酸锰化学中的应用进行了研究。通过多种合成路线,以良好产率分离得到了配合物[Mn(O₂CPh)₂{(py)₂CNOH}₂]·0.25H₂O(1·0.25H₂O)、Mn₄(O₂CPh)₂{(py)₂CO₂}₂{(py)₂CNO}₂Br₂]·MeCN(2·MeCN)、[Mn₄(O₂CPh)₂{(py)₂CO₂}₂{(py)₂CNO}₂Cl₂]·2MeCN(3·2MeCN)、[Mn₄(O₂CMe)₂{(py)₂CO₂}₂{(py)₂CNO}₂Br₂]·2MeCN(4·2MeCN)、[Mn₄(O₂CMe)₂{(py)₂CO₂}₂{(py)₂CNO}₂(NO₃)₂]·MeCN·H₂O(5·MeCN·H₂O)和[Mn₂(O₂CCF₃)₂(hfac)₂{(py)₂CNOH}₂](6)。这些反应的显著特点包括:在2 - 5中,一定量的(py)₂CNOH原位转化生成二 - 2 - 吡啶基甲酮偕二醇衍生物的配位二价阴离子(py)₂CO₂²⁻;在5中尽管起始原料不含硝酸盐,但有硝酸根配体参与配位;以及在6中引入了由Mn(hfac)₂·3H₂O(hfac⁻ = 六氟乙酰丙酮)制备的CF₃CO₂⁻配体。配合物2 - 4具有完全相似的分子结构。中心对称的四核分子包含两个MnII和两个MnIII六配位离子,由来自两个3.2211 (py)₂CO₂²⁻配体的四个μ - 氧原子连接在一起,形成了前所未有的[MnII(μ - OR)MnIII(μ - OR)₂MnIII(μ - OR)MnII]⁶⁺核心,该核心由四个金属离子的平面之字形阵列组成。外围配位由两个2.111 (py)₂CNO⁻、两个2.11 PhCO₂⁻和两个末端Br⁻配体提供。配合物5的整体分子结构与2 - 4非常相似,只是X⁻为螯合的NO₃⁻。提出了一个初步的反应方案来解释观察到的肟转化和硝酸盐生成。CF₃CO₂⁻配体是hfac⁻配体的分解产物之一。两个Mn(II)离子由两个采用2.0111配位模式的中性(py)₂CNOH配体桥连。一个螯合的hfac⁻配体和一个末端CF₃CO₂⁻离子在每个金属离子处完成了扭曲的八面体几何构型。配合物的循环伏安图显示出不可逆的还原和氧化过程。对代表性的四核簇合物2和4在2 - 300 K范围内进行的变温磁化率研究揭示了弱的反铁磁交换相互作用,导致非磁性的ST = 0基态。通过程序CLUMAG并应用适当的哈密顿量获得的最佳拟合参数为J(Mn(II)Mn(III)) = -1.7 (2), -1.5 (4) cm⁻¹和J(Mn(III)Mn(III)) = -3.0 (2, 4) cm⁻¹。