Schwartz Timothy M, Burnett Marianne E, Green Kayla N
Department of Chemistry and Biochemistry, Texas Christian University, 2950 S. Bowie, Fort Worth, TX 76129, USA.
Dalton Trans. 2020 Feb 21;49(7):2356-2363. doi: 10.1039/c9dt04714j. Epub 2020 Feb 5.
Pincer molecules are of increasing interest due to the modular nature of modification and range of reactivity observed when coordinated to metal ions. A subset within the family of pincer molecules use a pyridine group to bridge the outer two arms as well as provide a N-donor atom for metal binding. While the arm appendages have been studied extensively, little research has been conducted on the electronic effects of the central, substituted pyridine systems. Therefore, a series of NNN pincer-type ligands with substitution on the 4-position of the pyridine ring with -OH, -OBn, -H, -Cl, and -NO functional groups were synthesized and characterized through NMR spectroscopy and ESI-HRMS. Each pincer was metalated with Cu(ii) salts and evaluated through X-ray diffraction analysis, cyclic voltammetry, and density functional theory analysis. The results indicate that the relatively unstudied -OBn group demonstrates both electron-withdrawing (XRD bond lengths) and electron-donating (NMR spectroscopy) properties. The -NO pincer ligand shows a redox event within experimental windows evaluated, in contrast to the other congeners studied. In addition, electron-donating groups increase the electron density around the Cu(ii) center based on DFT studies and cyclic voltammetry. These findings can be applied to other pyridine-based pincer systems when considering ligand design and warrants future characterization of 4-position substituted pyridines.
由于修饰的模块化性质以及与金属离子配位时观察到的反应活性范围,钳形分子越来越受到关注。钳形分子家族中的一个子集使用吡啶基团来桥接外侧的两个臂,并为金属配位提供一个氮供体原子。虽然对臂附属物进行了广泛研究,但对中心取代吡啶体系的电子效应研究较少。因此,合成了一系列在吡啶环4位被-OH、-OBn、-H、-Cl和-NO官能团取代的NNN钳形配体,并通过核磁共振光谱和电喷雾高分辨质谱进行了表征。每个钳形配体都用铜(II)盐进行金属化,并通过X射线衍射分析、循环伏安法和密度泛函理论分析进行评估。结果表明,相对未被研究的-OBn基团表现出吸电子(X射线衍射键长)和供电子(核磁共振光谱)性质。与其他研究的同系物相比,-NO钳形配体在评估的实验窗口内显示出一个氧化还原事件。此外,基于密度泛函理论研究和循环伏安法,供电子基团增加了铜(II)中心周围的电子密度。在考虑配体设计时,这些发现可应用于其他基于吡啶的钳形体系,并为未来对4位取代吡啶的表征提供了依据。