Krupiński Piotr, Terlecki Michał, Kornowicz Arkadiusz, Justyniak Iwona, Prochowicz Daniel, van Leusen Jan, Kögerler Paul, Lewiński Janusz
Institute of Physical Chemistry, Polish Academy of Sciences, Kasprzaka 44/52, 01-224 Warsaw, Poland.
Faculty of Chemistry, Warsaw University of Technology, Noakowsiego 3, 00-664 Warsaw, Poland.
Inorg Chem. 2022 May 23;61(20):7869-7877. doi: 10.1021/acs.inorgchem.2c00456. Epub 2022 May 10.
While zinc μ-oxido-centered complexes are widely used as versatile precursors and building units of functional materials, the synthesis of their analogues based on other transition metals is highly underdeveloped. Herein, we present the first efficient systematic approach for the synthesis of homometallic [M(μ-O)L]-type clusters incorporating divalent transition-metal centers, coated by bridging monoanionic organic ligands. As a proof of concept, we prepared a series of charge-neutral metal-oxido benzamidates, [M(μ-O) (NHCOPh)] (M = Fe, Co, Zn), including iron(II) and cobalt(II) clusters not accessible before. The resulting complexes were characterized using elemental analysis, FTIR spectroscopy, magnetic measurements, and single-crystal X-ray diffraction. Detailed structural analysis showed interesting self-assembly of the tetrahedral clusters into 2D honeycomb-like supramolecular layers driven by hydrogen bonds in the proximal secondary coordination sphere. Moreover, we modeled the magnetic properties of new iron (II) and cobalt (II) clusters, which display a general tendency for antiferromagnetic coupling of the μ-O/μ-benzamidate-bridged metal centers. The developed synthetic procedure is potentially easily extensible to other M(II)-oxido systems, which will likely pave the way to new oxido clusters with interesting optoelectronic and self-assembly properties and, as a result, will allow for the development of new functional materials not achievable before.
虽然以锌的μ-氧化合物为中心的配合物被广泛用作功能材料的通用前体和构建单元,但基于其他过渡金属的类似物的合成却极不发达。在此,我们提出了第一种高效的系统方法,用于合成包含二价过渡金属中心、由桥连单阴离子有机配体包覆的同金属[M(μ-O)L]型簇合物。作为概念验证,我们制备了一系列电荷中性的金属氧化苯甲酰胺酸盐,[M(μ-O)(NHCOPh)](M = Fe、Co、Zn),包括之前无法获得的铁(II)和钴(II)簇合物。使用元素分析、傅里叶变换红外光谱、磁性测量和单晶X射线衍射对所得配合物进行了表征。详细的结构分析表明,四面体簇合物通过近端二级配位球中的氢键有趣地自组装成二维蜂窝状超分子层。此外,我们对新的铁(II)和钴(II)簇合物的磁性进行了建模,这些簇合物显示出μ-O/μ-苯甲酰胺酸盐桥连金属中心反铁磁耦合的一般趋势。所开发的合成方法可能很容易扩展到其他M(II)-氧化合物体系,这可能会为具有有趣光电和自组装性质的新氧化簇合物铺平道路,从而开发出以前无法实现的新型功能材料。