School of Chemical Sciences, Indian Association for the Cultivation of Science (IACS), 2A & 2B Raja S. C. Mullick Road, Jadavpur, Kolkata 700032, India.
Inorg Chem. 2021 Apr 19;60(8):5969-5979. doi: 10.1021/acs.inorgchem.1c00397. Epub 2021 Mar 30.
Spin states of iron often direct the selectivity in oxidation catalysis by iron complexes using hydrogen peroxide (HO) on an oxidant. While low-spin iron(III) hydroperoxides display stereoselective C-H bond hydroxylation, the reactions are nonstereoselective with high-spin iron(II) catalysts. The catalytic studies with a series of high-spin iron(II) complexes of N4 ligands with HO and Sc reported here reveal that the Lewis acid promotes catalytic C-H bond hydroxylation with high chemo- and stereoselectivity. This reactivity pattern is observed with iron(II) complexes containing two cis-labile sites. The enhanced selectivity for C-H bond hydroxylation catalyzed by the high-spin iron(II) complexes in the presence of Sc parallels that of the low-spin iron catalysts. Furthermore, the introduction of multimetal centers enhances the activity and selectivity of the iron catalyst. The study provides insights into the development of peroxide-dependent bioinspired catalysts for the selective oxygenation of C-H bonds without the restriction of using iron complexes of strong-field ligands.
铁的自旋态经常在使用过氧化氢 (HO) 作为氧化剂的铁配合物的氧化催化中指导选择性。虽然低自旋铁 (III) 过氧化物显示出立体选择性的 C-H 键羟化,但高自旋铁 (II) 催化剂的反应是非立体选择性的。这里报道的一系列具有 N4 配体的高自旋铁 (II) 配合物与 HO 和 Sc 的催化研究表明,路易斯酸促进了具有高化学和立体选择性的 C-H 键羟化反应。这种反应模式存在于含有两个顺式不稳定位点的铁 (II) 配合物中。在 Sc 存在下,高自旋铁 (II) 配合物催化的 C-H 键羟化选择性增强与低自旋催化剂相似。此外,多金属中心的引入提高了铁催化剂的活性和选择性。该研究为开发依赖过氧化物的仿生催化剂提供了深入了解,用于在不限制使用强场配体的铁配合物的情况下选择性地氧化 C-H 键。