| Literature DB >> 30250841 |
Lili Yang1, Xin Chen1, Zexing Qu1, Jiali Gao1,2.
Abstract
The oxidative C-H bond activation mediated byEntities:
Keywords: C-H activation; CEPT; HAT; MSDFT; N-dealkylation; mechanism
Year: 2018 PMID: 30250841 PMCID: PMC6139341 DOI: 10.3389/fchem.2018.00406
Source DB: PubMed Journal: Front Chem ISSN: 2296-2646 Impact factor: 5.221
Scheme 1ET-PT(SET) and HAT mechanism in the para-substituted N,N-dimethylanilines activated by [(N4Py)-FeIV = O](ClO4)2.
Scheme 2More O'Ferrall–Jencks diagram for the H-abstraction reaction of para-substituted N,N-dimethylanilines mediated by [(N4Py)-FeIV = O](ClO4)2. The horizontal and vertical coordinates stand for proton transfer (PT) and electron transfer (ET) pathway, and the diagonal line implies the concerted PT-CT pathway. The four corners (0a, 1a, 0b, 1b) of the diagram stand for the reactant state, electron transfer state, proton transfer state, and product state, respectively.
Figure 1The triplet and quintet energy profiles (in kcal/mol) related to triplet reactant state N-dealkylation of para-substituted N,N-dimethylanilines activated by [(N4Py)-FeIV = O](ClO4)2.
Figure 2The important bond length (in Å), angle (in degree) and vibration frequency (in cm−1) of the key intermediates for the triplet and quintet in the C-H bond activation of para-substituted N,N-dimethylanilines catalyzed by [(N4Py)-FeIV = O](ClO4)2.
Mulliken charges and spin densities of main intermediates in the H-transfer reaction of para-substituted N,N-dimethylanilines mediated by [(N4Py)-FeIV = O](ClO4)2, herein, there is no changes in the spin densities and charges of the counterions , Sub denotes the para-substituted N,N-dimethylanilines and Sub-H denotes the para-substituted N,N-dimethylanilines without H atom.
| 3 | 1.16 | 0.88 | −0.04 | −0.00 | 0.00 | 0.90 | −0.52 | 1.31 | 0.15 | −0.12 |
| 5 | 2.97 | 0.70 | 0.33 | −0.00 | 0.00 | 1.01 | −0.52 | 1.20 | 0.15 | −0.12 |
| 3 | 0.88 | 0.60 | −0.04 | −0.03 | 0.60 | 0.85 | −0.67 | 1.11 | 0.31 | 0.07 |
| 5 | 3.80 | 0.34 | 0.44 | −0.01 | −0.57 | 1.03 | −0.73 | 0.97 | 0.32 | 0.16 |
| 3 | 0.92 | 0.18 | −0.10 | 0.02 | 0.94 | 0.81 | −0.69 | 1.19 | 0.31 | 0.07 |
| 5 | 3.93 | 0.38 | 0.50 | −0.02 | −0.78 | 1.05 | −0.78 | 0.96 | 0.36 | 0.13 |
| 3 | 1.96 | 0.01 | 0.02 | 0.00 | 0.01 | 0.67 | −0.53 | 0.91 | 0.33 | 0.35 |
| 5 | 3.71 | 0.02 | 0.26 | 0.00 | 0.00 | 0.74 | −0.55 | 0.83 | 0.34 | 0.37 |
Figure 3Spin natural orbitals (SNO) and their occupation numbers of main intermediates in the H-transfer reaction of para-substituted N,N-dimethylanilines mediated by [(N4Py)-FeIV = O](ClO4)2. A negative occupation number corresponds to spin β.
Figure 4The effective diabatic and adiabatic potential energy surfaces for triplet (A) and quintet (B) high-valent oxoiron (IV) complexes along IRC in the C-H bond activation reactions. CEPT(R) (red line) and CEPT(P) (green line) represent the effective reactant state and product state of CEPT reaction mechanism, HAT(R) (orange line) and HAT(P) (blue line) mean the effective reactant state and product state of HAT reaction mechanism. The two black lines stand for the ground state and excited state. Use the lowest energy of the quintet ground state as the zero-point energy. The abscissa and ordinate stand for reaction coordinate from IRC (amu1/2bohr) and energy (kcal mol−1), respectively.