Aromí Guillem, Bhaduri Sumit, Artús Pau, Folting Kirsten, Christou George
Department of Chemistry and Molecular Structure Center, Indiana University, Bloomington, Indiana 47405-7102, USA.
Inorg Chem. 2002 Feb 25;41(4):805-17. doi: 10.1021/ic0105617.
New synthesis procedures are described to tetranuclear manganese carboxylate complexes containing the Mn(4)O(2) or Mn(4)O(3)X (X(-) = MeCO(2)(-), F(-), Cl(-), Br(-), NO(3)(-)) core. These involve acidolysis reactions of [Mn(4)O(3)(O(2)CMe)(4)(dbm)(3)] (1; dbm is the anion of dibenzoylmethane) or [Mn(4)O(2)(O(2)CEt)(6)(dbm)(2)] (8) with HX (X(-) = F(-), Cl(-), Br(-), NO(3)(-)); high-yield routes to 1 and 8 are also described. The X(-) = NO(3)(-) complexes [Mn(4)O(3)(NO(3))(O(2)CR)(3)(R'(2)dbm)(3)] (R = Me, R' = H (6); R = Me, R' = Et (7); R = Et, R' = H (12)) represent the first synthesis of the Mn(4)O(3)(NO(3)) core, which contains an unusual eta(1):mu(3)-NO(3)(-) group. Treatment of known Mn(4)O(2)(O(2)CEt)(7)(bpy)(2) with HNO(3) gives Mn(4)O(2)(NO(3))(O(2)CEt)(6)(bpy)(2) (15) containing a eta(1):eta(1):mu-NO(3)(-) group bridging the two body Mn(III) ions of the Mn(4)O(2) butterfly core. Complex 7 x 4CH(2)Cl(2) crystallizes in space group P2(1)2(1)2(1) with (at -168 degrees C) a = 21.110(3) A, b = 22.183(3) A, c = 15.958(2) A, Z = 4, and V = 7472.4(3) A(3). Complex 15 x (3)/(2)CH(2)Cl(2) crystallizes in space group P2(1)/c with (at -165 degrees C) a = 26.025(4) A, b = 13.488(2) A, c = 32.102(6) A, beta = 97.27(1) degrees, Z = 8, and V = 11178(5) A(3). Complex 7 contains a Mn(4)(mu(3)-O)(3)(mu(3)-NO(3)) core (3Mn(III), Mn(IV)) as seen for previous Mn(4)O(3)X complexes. Complex 15 contains a butterfly Mn(4)(mu(3)-O)(2) core. (1)H NMR spectra have been recorded for all complexes reported in this work and the various resonances assigned. All complexes retain their structural integrity on dissolution in chloroform and dichloromethane. Magnetic susceptibility (chi(M)) data were collected on 12 in the 5-300 K range in a 10.0 kG (1 T) field. Fitting of the data to the theoretical chi(M) vs T expression appropriate for a Mn(4)O(3)X complex of C(3)(v)() symmetry gave J(34) = -23.9 cm(-)(1), J(33) = 4.9 cm(-)(1), and g = 1.98, where J(34) and J(33) refer to the Mn(III)Mn(IV) and Mn(III)Mn(III) pairwise exchange interactions, respectively. The ground state of the molecule is S = 9/2, as found previously for other Mn(4)O(3)X complexes. This was confirmed by magnetization data collected at various fields and temperatures. Fitting of the data gave S = 9/2, D = -0.45 cm(-1), and g = 1.96, where D is the axial zero-field splitting parameter.
本文描述了含Mn(4)O(2)或Mn(4)O(3)X(X(-)=MeCO(2)(-)、F(-)、Cl(-)、Br(-)、NO(3)(-))核心的四核锰羧酸盐配合物的新合成方法。这些方法涉及[Mn(4)O(3)(O(2)CMe)(4)(dbm)(3)](1;dbm为二苯甲酰甲烷的阴离子)或[Mn(4)O(2)(O(2)CEt)(6)(dbm)(2)](8)与HX(X(-)=F(-)、Cl(-)、Br(-)、NO(3)(-))的酸解反应;还描述了制备1和8的高产率路线。X(-)=NO(3)(-)的配合物[Mn(4)O(3)(NO(3))(O(2)CR)(3)(R'(2)dbm)(3)](R = Me,R' = H(6);R = Me,R' = Et(7);R = Et,R' = H(12))代表了Mn(4)O(3)(NO(3))核心的首次合成,该核心包含一个不寻常的η(1):μ(3)-NO(3)(-)基团。用HNO(3)处理已知的Mn(4)O(2)(O(2)CEt)(7)(bpy)(2)得到Mn(4)O(2)(NO(3))(O(2)CEt)(6)(bpy)(2)(15),其含有一个η(1):η(1):μ-NO(3)(-)基团,桥连Mn(4)O(2)蝶形核心中的两个主体Mn(III)离子。配合物7·4CH(2)Cl(2)在空间群P2(1)2(1)2(1)中结晶(在-168℃时),a = 21.110(3) Å,b = 22.183(3) Å,c = 15.958(2) Å,Z = 4,V = 7472.4(3) Å(3)。配合物15·(3)/(2)CH(2)Cl(2)在空间群P2(1)/c中结晶(在-165℃时),a = 26.025(4) Å,b = 13.488(2) Å,c = 32.102(6) Å,β = 97.27(1)°,Z = 8,V = 11178(5) Å(3)。配合物7含有一个Mn(4)(μ(3)-O)(3)(μ(3)-NO(3))核心(3个Mn(III),Mn(IV)),如之前的Mn(4)O(3)X配合物所示。配合物15含有一个蝶形[Mn(4)(μ(3)-O)(