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定制三唑衍生卡宾配体的C-H胺化活性修饰。

Tailoring C-H amination activity modification of the triazole-derived carbene ligand.

作者信息

Hudson Luke A, Stroek Wowa, Albrecht Martin

机构信息

Department of Chemistry, Biochemistry and Pharmaceutical Sciences, University of Bern, Freiestrasse 3, 3012, Bern, Switzerland.

出版信息

Dalton Trans. 2024 Sep 10;53(35):14795-14800. doi: 10.1039/d4dt01715c.

Abstract

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.

摘要

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。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dd3e/11334762/677222cafdaa/d4dt01715c-s1.jpg

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