CNRS, LCC (Laboratoire de Chimie de Coordination), 205 route de Narbonne, F-31077 Toulouse, France.
Inorg Chem. 2011 Nov 7;50(21):10810-9. doi: 10.1021/ic201342z. Epub 2011 Oct 7.
The influence of the formal electrostatic interaction on the cis/trans coordination mode at a PdCl(2) center is investigated in a family of isostructural flexible diphosphine ligands Ph(2)P-X-C(6)H(4)-Y-PPh(2), where X and Y stand for neutral or cationic N,C-imidazolylene linkers. While the neutral and monocationic diphosphine spontaneously behave as classical cis-chelating ligands, only the dicationic diphosphine, where the electrostatic repulsion between the formal positive charges specifically takes place, is observed to behave as a trans-chelating ligand. The crucial role of electrostatics is analyzed on the basis of (31)P NMR data in solution and X-ray diffraction data in the crystal state. Comparative theoretical studies of the cis- and trans-chelated complexes, including EDA, static (31)P NMR, MESP, and AIM analyses, have been undertaken on the basis of DFT calculations in the gas phase or in the acetonitrile continuum. Whereas the cis-coordination mode is shown to be thermodynamically favored for the neutral ligand, the trans-coordination mode is found to be preferred for the dicationic homologue. The stereochemical preference is thus shown to be parallel to the expected effect of the formal electrostatic interaction. The results open perspectives for control of the cis- and trans-chelating behavior of flexible bidentate ligands by more or less reversible charge transfer at the periphery of the coordination sphere of a metallic center.
研究了在一系列结构同晶的柔性双膦配体 Ph(2)P-X-C(6)H(4)-Y-PPh(2)中,PdCl(2)中心的顺/反配位模式受形式静电相互作用的影响,其中 X 和 Y 代表中性或阳离子 N,C-咪唑啉连接体。虽然中性和单核膦配体自发表现为经典的顺式螯合配体,但只有双阳离子膦配体,其中形式正电荷之间的静电排斥特别发生,被观察为反式螯合配体。基于溶液中的 (31)P NMR 数据和晶体状态下的 X 射线衍射数据,分析了静电的关键作用。在气相或乙腈连续相中进行基于 DFT 计算的比较理论研究,包括 EDA、静态 (31)P NMR、MESP 和 AIM 分析,研究了顺式和反式螯合配合物。对于中性配体,顺式配位模式在热力学上是有利的,而对于双阳离子同系物,反式配位模式被发现是优选的。因此,立体化学偏好与形式静电相互作用的预期效果平行。结果为通过金属中心配位球外围的或多或少可逆的电荷转移来控制柔性双齿配体的顺式和反式螯合行为开辟了前景。