Costes Jean-Pierre, Dahan Françoise, Donnadieu Bruno, Rodriguez Douton Maria-Jesus, Fernandez Garcia Maria-Isabel, Bousseksou Azzedine, Tuchagues Jean-Pierre
Laboratoire de Chimie de Coordination du CNRS, UPR 8241, liée par conventions à l'Université Paul Sabatier et à l'Institut National Polytechnique de Toulouse, 205 route de Narbonne, 31077 Toulouse Cedex, France.
Inorg Chem. 2004 Apr 19;43(8):2736-44. doi: 10.1021/ic0348796.
The manganese(III) complexes studied in this report derive from asymmetrical trianionic ligands abbreviated H(3)L(i) (i = 4-6). These ligands are obtained through reaction of salicylaldehyde with "half-units", the latter resulting from monocondensation of different diamines with phenylsalicylate,. Upon deprotonation, L(i) (i = 4-6) possess an inner N(2)O(2) coordination site with one amido, one imine, and two phenoxo functions, and an outer amido oxygen donor. The trianionic character of such ligands yields original neutral complexes with the L/Mn stoichiometry. The crystal and molecular structures of three complexes have been determined at 190 K (1) or 180 K (2 and 3). Complex 1 crystallizes in the triclinic space group P (No. 2): a = 7.8582(14) A, b = 10.9225(16) A, c = 12.4882(18) A, alpha = 67.231(14) degrees, beta = 72.134(14) degrees, gamma = 82.589(13) degrees, V = 940.6(3) A(3), Z = 2. Complex 2 crystallizes in the orthorhombic space group Pbcn (Nuomicron. 60): a = 23.8283(15) A, b = 11.1605(7) A, c = 26.152(2) A, V = 6954.8(8) A(3), Z = 8, while complex 3 crystallizes in the monoclinic space group P2(1)/c (No. 14) with a = 11.7443(14) A, b = 7.5996(10) A, c = 18.029(2) A, beta = 100.604(10) degrees, V = 1581.6(3) A(3), Z = 4. Owing to hydrogen bonds and pi-pi stackings, the mononuclear neutral molecules of 1 are arranged in a 2D network while complexes 2 and 3 are tetranuclear and polymeric (1D chain) species, respectively, owing to the bridging ability of the oxygen atom of the amido function. The experimental magnetic susceptibilities of complexes 2 and 3 indicate the occurrence of similarly weak Mn(III)-Mn(III) antiferromagnetic interactions (J = -1.1 cm(-1)). Single ion zero-field splitting of manganese(III) must be taken into account for satisfactorily fitting the data by exact calculation of the energy levels associated to the spin Hamiltonian through diagonalization of the full matrix for axial symmetry in 2 (J = - 1.1 cm(-1), D(1) = 2.2 cm(-1), D(2) = -2.8 cm(-1)), D(1) and D(2) being associated to the six- and five-coordinate Mn ions, respectively. A weaker antiferromagnetic interaction (J = - 0.2 cm(-1)) operates through pi-pi stacking in complex 1. Complex 3 is a weak ferromagnet (ordering temperature approximately 7 K) as a result of the spin canting originating from the crystal packing.
本报告中研究的三价锰配合物源自缩写为H(3)L(i)(i = 4 - 6)的不对称三阴离子配体。这些配体通过水杨醛与“半单元”反应获得,后者是由不同二胺与苯基水杨酸酯单缩合产生的。去质子化后,L(i)(i = 4 - 6)具有一个内部N(2)O(2)配位位点,带有一个酰胺基、一个亚胺基和两个酚氧基官能团,以及一个外部酰胺基氧供体。此类配体的三阴离子特性产生了具有L/Mn化学计量比的原始中性配合物。已在190 K(1)或180 K(2和3)下测定了三种配合物的晶体和分子结构。配合物1结晶于三斜空间群P(编号2):a = 7.8582(14) Å,b = 10.9225(16) Å,c = 12.4882(18) Å,α = 67.231(14)°,β = 72.134(14)°,γ = 82.589(13)°,V = 940.6(3) Å(3),Z = 2。配合物2结晶于正交空间群Pbcn(编号60):a = 23.8283(15) Å,b = 11.1605(7) Å,c = 26.152(2) Å,V = 6954.8(8) Å(3),Z = 8,而配合物3结晶于单斜空间群P2(1)/c(编号14),a = 11.7443(14) Å,b = 7.5996(10) Å, c = 18.029(2) Å,β = 100.604(10)°,V = 1581.6(3) Å(3),Z = 4。由于氢键和π - π堆积作用,配合物1的单核中性分子排列成二维网络,而配合物2和3分别是四核和聚合(一维链)物种,这是由于酰胺基官能团的氧原子具有桥连能力。配合物2和3的实验磁化率表明存在类似的弱三价锰 - 三价锰反铁磁相互作用(J = -1.1 cm(-1))。对于配合物2,通过对轴向对称的全矩阵进行对角化精确计算与自旋哈密顿量相关的能级来令人满意地拟合数据时,必须考虑三价锰的单离子零场分裂(J = -1.1 cm(-1),D(1) = 2.2 cm(-1),D(2) = -2.8 cm(-1)),D(1)和D(2)分别与六配位和五配位的锰离子相关。配合物1中通过π - π堆积存在较弱的反铁磁相互作用(J = -0.2 cm(-1))。由于晶体堆积产生的自旋倾斜,配合物3是一种弱铁磁体(有序温度约为7 K)。