Beckman Institute, Division of Chemistry and Chemical Engineering, California Institute of Technology, Pasadena, California 91125, USA.
Inorg Chem. 2011 Oct 17;50(20):10213-24. doi: 10.1021/ic201213c. Epub 2011 Sep 13.
Here we report the syntheses and crystal structures of a series of cobalt(II) and nickel(II) complexes derived from (R)NP2 ligands (where R = OMe(Bz), H(Bz), Br(Bz), Ph) bearing ethylene linkers between a single N and two P donors. The Co(II) complexes generally adopt a tetrahedral configuration of general formula [(NP2)Co(I)(2)], wherein the two phosphorus donors are bound to the metal center but the central N-donor remains unbound. We have found one case of structural isomerism within a single crystal structure. The Co(II) complex derived from (Bz)NP2 displays dual coordination modes: one in the tetrahedral complex [((Bz)NP2)Co(I)(2)]; and the other in a square pyramidal variant, [((Bz)NP2)Co(I)(2)]. In contrast, the Ni(II) complexes adopt a square planar geometry in which the P(Et)N(Et)P donors in the ligand backbone are coordinated to the metal center, resulting in cationic species of formula ((R)NP2)Ni(I) with iodide as counterion. All Ni(II) complexes exhibit sharp (1)H and (31)P spectra in the diamagnetic region. The Co(II) complexes are high-spin (S = 3/2) in the solid state as determined by SQUID measurements from 4 to 300 K. Solution electron paramagnetic resonance (EPR) experiments reveal a high-spin/low-spin Co(II) equilibrium that is dependent on solvent and ligand substituent.
在这里,我们报告了一系列钴(II)和镍(II)配合物的合成和晶体结构,这些配合物源自带有乙烯连接体的(R)NP2 配体(其中 R = OMe(Bz)、H(Bz)、Br(Bz)、Ph),该连接体将单个 N 和两个 P 供体连接在一起。钴(II)配合物通常采用四面体构型,通式为[(NP2)Co(I)(2)],其中两个磷供体与金属中心配位,但中心 N-供体保持未配位。我们在单个晶体结构中发现了一种结构异构现象。源自(Bz)NP2 的 Co(II)配合物显示出双重配位模式:一种在四面体配合物[((Bz)NP2)Co(I)(2)]中;另一种在四方锥变体中,[((Bz)NP2)Co(I)(2)]。相比之下,镍(II)配合物采用正方形平面几何构型,配体骨架中的 P(Et)N(Et)P 供体与金属中心配位,导致阳离子物种具有通式((R)NP2)Ni(I),其中碘化物作为抗衡离子。所有镍(II)配合物在反磁性区域均显示出尖锐的(1)H 和(31)P 谱。通过从 4 到 300 K 的 SQUID 测量,确定钴(II)配合物在固态中为高自旋(S = 3/2)。溶液电子顺磁共振(EPR)实验揭示了一种依赖于溶剂和配体取代基的高自旋/低自旋 Co(II)平衡。