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◆ Dalton transactions (Cambridge, England : 2003)2026-08-17

Tuning the selectivity of [MnV(TAML)(O)]- towards allylic oxidation using an axial ligand and a Brønsted acid - a DFT study.

Madhuri Priya Sivaramakrishnan, Subash Arjunan, Prabha Vadivelu

原始摘要(英文原文)· Original abstract
The catalytic activity and selectivity of [MnV(TAML)(O)]- (1) towards allylic oxidation of cyclohexenol were investigated using DFT methods. Complex 1 is stable in the low-spin state (S = 0), while reactivity proceeds through the high-spin state (S = 1), requiring +11.3 kcal mol-1 to attain the reactive spin state. Mechanistic studies reveal that allylic C-H activation (ΔG‡ = +17.4 kcal mol-1) is favoured over O-H activation (ΔG‡ = +23.2 kcal mol-1) by +5.8 kcal mol-1, both yielding thermodynamically identical products (ΔGR.E = -56.4 kcal mol-1). The competing epoxidation pathway has a comparable barrier (ΔG‡ = +19.6 kcal mol-1; ΔGR.E = -23.4 kcal mol-1), indicating poor selectivity in 1. Introduction of an axial ligand -OCN- (1a) changes the active oxidant to MnIV-O˙, eliminates the spin-state energy gap, and greatly enhances reactivity, lowering the barriers for C-H activation (ΔG‡ = +3.2 kcal mol-1; ΔGR.E = -81.5 kcal mol-1) and epoxidation (ΔG‡ = +6.7 kcal mol-1; ΔGR.E = -50.8 kcal mol-1). Furthermore, incorporation of the HOTf moiety generates MnIV-OH as the active oxidant (1b), where the allylic C-H activation occurs with ΔG‡ = +8.7 kcal mol-1 (ΔGR.E = -45.3 kcal mol-1), while epoxidation becomes highly unfavourable (ΔG‡ = +42.8 kcal mol-1; ΔGR.E = -5.0 kcal mol-1), demonstrating selective cyclohexenone formation with 50% kinetic enhancement.
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Tuning the selectivity of [MnV(TAML)(O)]- towards allylic oxidation using an axial ligand and a Brønsted acid - a DFT study. — 科研速览 Science Skim