Zhao Hanhua, Shatruk Mikhail, Prosvirin Andrey V, Dunbar Kim R
Department of Chemistry, Texas A&M University, College Station, Texas 77842-3012, USA.
Chemistry. 2007;13(23):6573-89. doi: 10.1002/chem.200700298.
Reactions of W(CN)(8) anions with complexes of Mn(2+) ion with tridentate organic ligand 2,4,6-tris(2-pyridyl)-1,3,5-triazine (tptz) lead to a series of heterobimetallic complexes. The crystal structures of these compounds are derived from the same basic structural fragment, namely a W(2)Mn(2) square constructed of alternating cyanide-bridged W and Mn ions. In Mn(II)(tptz)(OAc)(H(2)O)(2){Mn(II)(tptz)(MeOH)(1.58)(H(2)O)(0.42)W(V)(CN)(8)}.5 MeOH.9.85 H(2)O (3), isolated molecular squares are co-crystallized with mononuclear cationic Mn(II) complexes. The structure of {Mn(II)(tptz)(MeOH)[W(IV)(CN)(8)].2 MeOH}(infinity) (4) is based on an infinite chain of vertex-sharing squares, while {[Mn(II) (2)(tptz)(2)(MeOH)(3)(OAc)][W(V)(CN)(8)].3.5 MeOH0.25 H(2)O}(infinity) (5) and {[Mn(II) (2)(tptz)(2)(MeOH)(3)W(V)(CN)(8)][Mn(II)(tptz)(MeOH)W(V)(CN)(8)].2 H(2).OMeOH}(8) (7) are derived from such an infinite chain by removing one of the W-C[triple bond]N-Mn linkages in each of the squares. The decanuclear cluster [Mn(II) (6)(tptz)(6)(MeOH)(4)(DMF)(2)W(V) (4)(CN)(32)].8.2 H(2)O.2.3 MeOH (6) is a truncated version of structure 4 and consists of three vertex-sharing W(2)Mn(2) squares. The structure of Mn(II)(tptz)(MeOH)(NO(3))Mn(II)(tptz)(MeOH) (DMF)W(V)(CN)(8).6 MeOH (8) consists of a hexanuclear cluster, in which the central W(2)Mn(2) square is extended by two Mn side-arms attached via CN(-) ligands to the W corners of the square. The magnetic behavior of these heterobimetallic complexes (except for 4) is dominated by antiferromagnetic coupling between Mn(II) and W(V) ions mediated by cyanide bridges. Compounds 3, 6, and 8 exhibit high spin ground states of S=4, 13, and 9, respectively, while 5 and 7 exhibit behavior typical of a ferrimagnetic chain with alternating spin centers. Complex 4 contains diamagnetic W(IV) centers but holds promise as a potential photomagnetic solid.
W(CN)(8)阴离子与Mn(2+)离子和三齿有机配体2,4,6-三(2-吡啶基)-1,3,5-三嗪(tptz)形成的配合物反应,生成了一系列异双核配合物。这些化合物的晶体结构源自相同的基本结构片段,即由交替的氰基桥连的W和Mn离子构成的W(2)Mn(2)正方形。在Mn(II)(tptz)(OAc)(H(2)O)(2){Mn(II)(tptz)(MeOH)(1.58)(H(2)O)(0.42)W(V)(CN)(8)}.5 MeOH.9.85 H(2)O (3)中,分离出的分子正方形与单核阳离子Mn(II)配合物共结晶。{Mn(II)(tptz)(MeOH)[W(IV)(CN)(8)].2 MeOH}(infinity) (4)的结构基于由顶点共享正方形组成的无限链,而{[Mn(II) (2)(tptz)(2)(MeOH)(3)(OAc)][W(V)(CN)(8)].3.5 MeOH0.25 H(2)O}(infinity) (5)和{[Mn(II) (2)(tptz)(2)(MeOH)(3)W(V)(CN)(8)][Mn(II)(tptz)(MeOH)W(V)(CN)(8)].2 H(2).OMeOH}(8) (7)是通过在每个正方形中去除一个W-C[三键]N-Mn键从这样的无限链衍生而来的。十核簇[Mn(II) (6)(tptz)(6)(MeOH)(4)(DMF)(2)W(V) (4)(CN)(32)].8.2 H(2)O.2.3 MeOH (6)是结构4的截断形式,由三个顶点共享的W(2)Mn(2)正方形组成。Mn(II)(tptz)(MeOH)(NO(3))Mn(II)(tptz)(MeOH) (DMF)W(V)(CN)(8).6 MeOH (8)的结构由一个六核簇组成,其中中心的W(2)Mn(2)正方形通过两个通过CN(-)配体连接到正方形W角的Mn侧臂扩展。这些异双核配合物(4除外)的磁行为由氰基桥介导的Mn(II)和W(V)离子之间的反铁磁耦合主导。化合物3、6和8分别表现出S = 4、13和9的高自旋基态,而5和7表现出具有交替自旋中心的亚铁磁链的典型行为。配合物4包含抗磁性W(IV)中心,但有望成为潜在的光磁固体。