Computational Insights into Hydrogen Atom Transfer Mediators in C-H Activation Catalysis of Nonheme Fe(IV)O Complexes

被引:0
作者
Katoch, Akanksha [1 ]
Mandal, Debasish [1 ]
机构
[1] Thapar Inst Engn & Technol, Dept Chem & Biochem, Patiala 147001, Punjab, India
关键词
COUPLED ELECTRON-TRANSFER; PI-STACKING INTERACTIONS; IRON-OXO COMPLEXES; OXYL RADICAL PINO; 2-STATE REACTIVITY; N-HYDROXYPHTHALIMIDE; ABSTRACTION REACTIVITY; IRON(IV)-OXO COMPLEX; BENZYL ALCOHOLS; BOND;
D O I
10.1021/acs.jpcb.4c05618
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
This study presents a detailed density functional theory (DFT) investigation into the mechanism and energetics of C-H activations catalyzed by bioinspired Fe(IV)O complexes, particularly in the presence of N-hydroxy mediators. The findings show that these mediators significantly enhance the reactivity of the iron-oxo complex. The study examines three substrates with varying bond dissociation energies-ethylbenzene, cyclohexane, and cyclohexadiene-alongside the [Fe(IV)O(N4Py)]2+ complex. Mediators N-hydroxyphthalimide (NHPI) and N-hydroxyquinolinimide (NHQI) were chosen for their strong oxidative abilities. The results reveal that NO-H bond cleavage in N-hydroxy compounds occurs more readily than C-H bond cleavage in hydrocarbons, as supported by the Marcus cross-relation applied to H-abstraction. This leads to the rapid formation of aminoxyl radicals, which are more reactive than Fe(IV)O species, lowering the activation energy and enhancing the reaction rate. The C-H bond activation aligns with the Bell-Evans-Polanyi principle, correlating the activation energy with the substrate bond dissociation energy. The investigation reveals that the mediator pathway is favored both thermodynamically and kinetically. Additionally, distortion energy provides a compelling explanation for the observed reactivity trends, further highlighting NHQI's superior efficiency compared to NHPI. Additionally, quantum mechanical tunneling plays a significant role, as evidenced by the computed kinetic isotope effect, which matches experimental data.
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页码:88 / 95
页数:8
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