School of Chemistry, Monash University, Clayton, Victoria 3800, Australia.
Dalton Trans. 2012 Aug 28;41(32):9789-96. doi: 10.1039/c2dt30786c. Epub 2012 Jul 9.
The synthesis, structures and magnetic properties of two new mixed-valence heptanuclear manganese clusters are described. Both complexes utilize triethanolamine (teaH(3)) as a bridging ligand, displaying near planar, disc-like metal topologies and are of formulae Mn(II)(4)Mn(IV)(3)(tea)(teaH(2))(3)(peolH)(4)(2)·solv (1) and [Mn(II)(4)Mn(III)(3)F(3)(tea)(teaH)(teaH(2))(2)(piv)(4)(Hpiv)(chp)(3)]·0.5MeCN (2). Compound 1 is a rare mixed-valence compound containing Mn(II) and Mn(IV) ions only and is the first example of a heptanuclear disc with a {Mn(II)(4)Mn(IV)(3)} oxidation state distribution. Compound 2 is a {Mn(II)(4)Mn(III)(3)} complex and displays a unique arrangement of oxidation states within the disc, when compared to other known {Mn(II)(4)Mn(III)(3)} examples. Variable temperature DC and AC magnetic susceptibility studies were carried out for 1 and 2 in the 2-300 K temperature range. Compound 1 displayed an increase in the χ(M)T susceptibility values as the temperature is decreased indicating dominant ferromagnetic interactions are present within the cluster. Fits of the χ(M)T vs. T data reveals an S = 23/2 ground state, with several close lying excited states within 1 cm(-1). Compound 2 displays an overall decrease in the χ(M)T value as the temperature is decreased down to 2 K indicating dominant antiferromagnetic interactions present with a probable S = 4 ground state as determined from the DC and AC susceptibility data.
描述了两个新的混合价七核锰簇合物的合成、结构和磁性。两个配合物都利用三乙醇胺(teaH(3))作为桥联配体,呈现近平面、盘状金属拓扑结构,化学式为[Mn(II)(4)Mn(IV)(3)(tea)(teaH(2))(3)(peolH)(4)](BF(4))(2)·溶剂(1)和[Mn(II)(4)Mn(III)(3)F(3)(tea)(teaH)(teaH(2))(2)(piv)(4)(Hpiv)(chp)(3)]·0.5MeCN(2)。化合物 1 是一种仅含有 Mn(II)和 Mn(IV)离子的罕见混合价化合物,是具有{Mn(II)(4)Mn(IV)(3)}氧化态分布的七核盘的第一个例子。化合物 2 是一种{Mn(II)(4)Mn(III)(3)}配合物,与其他已知的{Mn(II)(4)Mn(III)(3)}例子相比,在盘内显示出独特的氧化态排列。对 1 和 2 在 2-300 K 温度范围内进行了变温直流和交流磁化率研究。化合物 1 随着温度的降低,χ(M)T 磁化率值增加,表明簇内存在主导的铁磁相互作用。χ(M)T 与 T 数据的拟合表明,基态为 S = 23/2,在 1 cm(-1)内有几个近邻激发态。化合物 2 随着温度降至 2 K,χ(M)T 值总体下降,表明存在主导的反铁磁相互作用,可能的基态为 S = 4,这是由直流和交流磁化率数据确定的。