Department of Chemistry, Syracuse University, Syracuse, New York 13244-4100, USA.
Inorg Chem. 2011 Jan 3;50(1):378-89. doi: 10.1021/ic1020884. Epub 2010 Nov 29.
The reaction in water of Cu(NO(3))(2)·2.5H(2)O with 2,2'-bipyridine (bipy), 1,10-phenanthroline (phen), or 1,10-phenanthroline-5-amine (phenam), and sodium pyrophosphate (Na(4)P(2)O(7)), at various pHs, afforded three new copper(II)-pyrophosphate complexes, namely, {Cu(bipy)(cis-H(2)P(2)O(7))}·3H(2)O (1a), {Cu(phen)(H(2)O)(HP(2)O(7))(2)}(ClO(4))(2)·4H(2)O (2), and {Cu(2)(phenam)(2)(P(2)O(7))·25H(2)O}(n) (3). A solvent free crystalline phase of 1a was also isolated with formula {Cu(bipy)(trans-H(2)P(2)O(7))} (1b), which can be regarded as a pseudo-polymorph of 1a. Single crystal X-ray analyses revealed these compounds to have uncommon molecular architectures, with 3 being an unprecedented pyrophosphate-containing two-dimensional (2D) polymer. Compounds 1a/1b and 2 are discrete di- and tetra-nuclear complexes, respectively. The cationic {Cu(phen)(H(2)O)(HP(2)O(7))(2)}(2+) unit in 2 presents a unique quasi-flat structure, held together by solely in-plane pyrophosphate bridging modes (short O(eq)-P-O(eq) and long O(eq)-P-O-P-O(eq) pathways), a coordination arrangement also not previously reported. A different tetranuclear copper(II)-pyrophosphate arrangement is found in 3, with two classically bridged dimers (O(eq)-P-O(eq) pathway) joined together by auxiliary equatorial-axial μ-O pyrophosphate bridges. Here, the bidimensionality is reached through bridging phenam ligands, which provide further inter-"tetramer" metal-metal connections [(N,N')(eq)-(N'')(ax) pathway], leading to the formation of an expanded covalent network based on the Cu(2)(phenam)(2)(P(2)O(7)) moiety. Variable-temperature magnetic susceptibility measurements on polycrystalline samples of 2 and 3 revealed net antiferromagnetic coupling between metal centers with J(2a) = -7.9(2) cm(-1), J(2b) = -46.9(3) cm(-1), J(2c) = 0 cm(-1) in 2 (H = -J(2a)[S(Cu(1))·S(Cu(2)) + S(Cu(1a))·S(Cu(2a))] - J(2b)[S(Cu(1))·S(Cu(2a)) + S(Cu(1a))·S(Cu(2))] - J(2c)S(Cu(2))·S(Cu(2a))), and J(3a) = -87.9(2) cm(-1), J(3b) = -5(1) cm(-1) and J(3c) = +5(3) cm(-1) in 3 (H = -J(3a)[S(Cu(1))·S(Cu(2)) + S(Cu(1a))·S(Cu(2a))] - J(3b)[S(Cu(1))·S(Cu(2a)) + S(Cu(1a))·S(Cu(2))] - J(3c)S(Cu(2))·S(Cu(2a))). For 1a, a net ferromagnetic coupling is observed with J(1a) = +0.86(1) cm(-1) (H = -J S(A)·S(B) + S(A)·D· S(B) + βH (g(A)S(A) + g(B)S(B)). This is the first example of ferromagnetic coupling in pyrophosphate-complexes reported to date. A structure-function correlation study focusing on magnetic exchange across the observed diverse pyrophosphate-bridges is described with density functional theory (DFT) calculations included to support the stated observations.
水合硝酸铜(II)与 2,2'-联吡啶(bipy)、1,10-菲啰啉(phen)或 1,10-菲啰啉-5-胺(phenam)和焦磷酸钠(Na4P2O7)在不同 pH 值下反应,生成三种新的铜(II)-焦磷酸根配合物,即:[Cu(bipy)(顺式-H2P2O7)](2)·3H2O(1a)、[Cu(phen)(H2O)]4(HP2O7)(2)(ClO4)2·4H2O(2)和[Cu2(phenam)2(P2O7)](2)·25H2O(n)(3)。还通过溶剂自由结晶相分离出 1a 的式为[Cu(bipy)(反式-H2P2O7)](2)的类似物(1b),其可以被视为 1a 的准同素异形体。单晶 X 射线分析表明,这些化合物具有不同寻常的分子结构,其中 3 是一种前所未有的含焦磷酸根的二维(2D)聚合物。化合物 1a/1b 和 2 分别为离散的二核和四核配合物。2 中的阳离子[Cu(phen)(H2O)]4(HP2O7)(2)+单元呈现出独特的准平面结构,仅通过平面内的焦磷酸根桥联模式(短 O(eq)-P-O(eq)和长 O(eq)-P-O-P-O(eq)途径)结合在一起,这种配位排列以前也没有报道过。在 3 中发现了不同的四核铜(II)-焦磷酸根排列方式,其中两个经典桥联的二聚体(O(eq)-P-O(eq)途径)通过辅助赤道-轴向μ-O 焦磷酸根桥接在一起。在这里,二维结构是通过桥联的 phenam 配体形成的,它提供了进一步的“四聚体”金属-金属连接[(N,N')(eq)-(N'')(ax)途径],导致基于[Cu2(phenam)2(P2O7)](2)部分形成扩展的共价网络。对 2 和 3 的多晶样品进行变温磁化率测量表明,金属中心之间存在净反铁磁耦合,其中 J(2a)=-7.9(2)cm-1,J(2b)=-46.9(3)cm-1,J(2c)=0cm-1在 2 中(H=-J(2a)[S(Cu(1))·S(Cu(2))+ S(Cu(1a))·S(Cu(2a))]-J(2b)[S(Cu(1))·S(Cu(2a))+ S(Cu(1a))·S(Cu(2))]-J(2c)S(Cu(2))·S(Cu(2a))),和 J(3a)=-87.9(2)cm-1,J(3b)=-5(1)cm-1,J(3c)=+5(3)cm-1在 3 中(H=-J(3a)[S(Cu(1))·S(Cu(2))+ S(Cu(1a))·S(Cu(2a))]-J(3b)[S(Cu(1))·S(Cu(2a))+ S(Cu(1a))·S(Cu(2))]-J(3c)S(Cu(2))·S(Cu(2a)))。对于 1a,观察到净铁磁耦合,其中 J(1a)=+0.86(1)cm-1(H=-J S(A)·S(B)+ S(A)·D· S(B)+βH(g(A)S(A)+ g(B)S(B))。这是迄今为止报道的焦磷酸根配合物中首例铁磁耦合。描述了一个关注观察到的不同焦磷酸根桥之间的磁交换的结构-功能相关性研究,并包括密度泛函理论(DFT)计算以支持所陈述的观察结果。