Hudson Luke A, Stroek Wowa, Albrecht Martin
Department of Chemistry, Biochemistry and Pharmaceutical Sciences, University of Bern, Freiestrasse 3, 3012, Bern, Switzerland.
Dalton Trans. 2024 Sep 10;53(35):14795-14800. doi: 10.1039/d4dt01715c.
Two new C,O-bidentate chelating triazolylidene-phenolate ligands were synthesized that feature a diisopropylphenyl (dipp) and an adamantyl (Ad) substituent respectively on the triazole scaffold. Subsequent metalation afforded iron(II) complexes [Fe(C^O)] that are active catalysts for the intramolecular C-H amination of organic azides. When compared to the parent complex containing a triazolylidene with a mesityl substituent (Mes) the increased steric bulk led to slightly lower activity (TOF = 23 h 30 h), however selectivity towards pyrrolidine formation increases from 92% up to >99%. Kinetic studies indicate that the mechanism is similar in all three complexes and includes a half-order dependence in [Fe(C^O)], congruent with the involvement of a dimetallic catalyst resting state within this catalyst class. Structural analysis suggests that enhanced bulkiness disfavors N loss and nitrene formation, yet shields the nitrene from intermolecular processes and thus favors intramolecular nitrene insertion into the C-H bond. This model rationalizes the high selectivity and the lower reaction rate observed with dipp and with Ad substituents on the ligand.
合成了两种新型的C、O-双齿螯合三唑亚基酚盐配体,它们在三唑骨架上分别具有二异丙基苯基(dipp)和金刚烷基(Ad)取代基。随后的金属化反应得到了铁(II)配合物[Fe(C^O)],它们是有机叠氮化物分子内C-H胺化反应的活性催化剂。与含有均三甲苯基(Mes)取代基的三唑亚基的母体配合物相比,空间位阻的增加导致活性略有降低(TOF = 23 h对30 h),然而,吡咯烷形成的选择性从92%提高到>99%。动力学研究表明,这三种配合物的反应机理相似,且对[Fe(C^O)]呈半级依赖性,这与该类催化剂中双金属催化剂静止态的参与一致。结构分析表明,增加的空间位阻不利于N的损失和氮烯的形成,但能保护氮烯免受分子间过程的影响,从而有利于分子内氮烯插入C-H键。该模型解释了在配体上带有dipp和Ad取代基时观察到的高选择性和较低反应速率。