Schmiege Benjamin M, Carney Michael J, Small Brooke L, Gerlach Deidra L, Halfen Jason A
Department of Chemistry, University of Wisconsin-Eau Claire, 105 Garfield Avenue, Eau Claire, WI 54702, USA.
Dalton Trans. 2007 Jun 28(24):2547-62. doi: 10.1039/b702197f. Epub 2007 Apr 16.
This report describes the synthesis and characterization of metal halide complexes (M = Mn, Fe, Co) supported by a new family of pendant donor-modified alpha-diimine ligands. The donor (N, O, P, S) substituent is linked to the alpha-diimine by a short hydrocarbon spacer forming a tridentate, mer-coordinating ligand structure. The tridentate ligands are assembled from monoimine precursors, the latter being synthesized by selective reaction with one carbonyl group of the alpha-dione. While attempts to separately isolate tridentate ligands in pure form were unsuccessful, metal complexes supported by the tridentate ligand are readily synthesized in-situ, by forming the ligand in the presence of the metal halide, resulting in a metal complex which subsequently crystallizes out of the reaction mixture. Metal complexes with NNN, NNO, NNP and NNS donor sets have been prepared and examples supported by NNN, NNP and NNS ligands have been structurally characterized. In the solid state, NNN and NNP ligands coordinate in a mer fashion and the metal complexes possess distorted square pyramidal structures and high spin (S = 2) electronic configurations. Compounds with NNS coordination environments display a variety of solid state structures, ranging from those with unbound sulfur atoms, including chloride bridged and solvent ligated species, to those with sulfur weakly bound to the metal center. The extent of sulfur ligation depends on the donor ability of the crystallization solvent and the substitution pattern of the arylthioether substituent.
本报告描述了由一类新型的侧基供体修饰的α-二亚胺配体支持的金属卤化物配合物(M = Mn、Fe、Co)的合成与表征。供体(N、O、P、S)取代基通过短烃间隔基与α-二亚胺相连,形成三齿、面式配位的配体结构。三齿配体由单亚胺前体组装而成,单亚胺前体通过与α-二酮的一个羰基选择性反应合成。虽然试图以纯形式单独分离三齿配体未成功,但由三齿配体支持的金属配合物可通过在金属卤化物存在下形成配体原位轻松合成,从而得到一种随后从反应混合物中结晶出来的金属配合物。已制备了具有NNN、NNO、NNP和NNS供体组的金属配合物,并对由NNN、NNP和NNS配体支持的实例进行了结构表征。在固态中,NNN和NNP配体以面式方式配位,金属配合物具有扭曲的四方锥结构和高自旋(S = 2)电子构型。具有NNS配位环境的化合物显示出多种固态结构,从具有未配位硫原子的结构,包括氯化物桥连和溶剂配位的物种,到硫与金属中心弱配位的结构。硫配位的程度取决于结晶溶剂的供体能力和芳基硫醚取代基的取代模式。