View : 214 Download: 0

Theoretical investigation on the elusive structure-activity relationship of bioinspired high-valence nickel-halogen complexes in oxidative fluorination reactions

Title
Theoretical investigation on the elusive structure-activity relationship of bioinspired high-valence nickel-halogen complexes in oxidative fluorination reactions
Authors
Zhou, AnranLi, Xiao-XiSun, DongruCao, XuanyuWu, ZhiminChen, HuanhuanZhao, YufenNam, WonwooWang, Yong
Ewha Authors
남원우
SCOPUS Author ID
남원우scopus
Issue Date
2023
Journal Title
DALTON TRANSACTIONS
ISSN
1477-9226JCR Link

1477-9234JCR Link
Citation
DALTON TRANSACTIONS vol. 52, no. 7, pp. 1977 - 1988
Publisher
ROYAL SOC CHEMISTRY
Indexed
SCIE; SCOPUS WOS scopus
Document Type
Article
Abstract
Very recently, bioinspired high-valence metal-halogen complexes have been proven to be competent oxidants in the C-H bond activation and heteroatom dihalogenation reactions. However, the structure-activity relationship of such active species and the reaction mechanisms of oxidations mediated by these oxidants are still elusive. In this study, density functional theory (DFT) calculations were performed to systematically study the oxidizing ability of the high-valence Ni-III-X (X = F and Cl) complexes Et4N[Ni-III(Cl/F)(L)], (1(Cl/F), Et = ethyl, L = N,N'-(2,6-dimethylphenyl)-2,6-pyridinedicarboxamide), such as the reaction mechanism of fluorination of 1,4-cyclohexadiene (CHD) by 1(F) in the presence of AgF and the reaction mechanism of difluorination of triphenyl phosphine (PPh3) by 1(F). All calculated results fit well with the experiments and present new mechanistic findings. The C-H bond activation by the high-valence nickel(iii)-halogen complexes was found to proceed via a hydrogen-atom transfer (HAT) mechanism by analysis of the molecular orbitals of the transition states. C-H bond activation by 1(F) takes a Ni-F-H angle of ca. 180 & DEG;, whereas that by 1(Cl) takes an angle of ca. 120 & DEG; on the transition states. These results indicate that the exchange-enhanced reactivity is responsible for the dramatic oxidative difference between these two oxidants. The role of AgF in C-H fluorination of CHD by 1(F) is proposed to act as a Lewis acid adduct, AgF-binding Ni(iii)-fluorine complex 1(F-Ag-F), which acts both as an oxidant in C-H bond activation and as a fluorine donor in the fluorination step. A cooperative oxidation mechanism involving two 1(F) oxidants was proposed for the difluorination of PPh3 by 1(F). These theoretical findings will enrich the knowledge of high-valence metal-halogen chemistry and play a positive role in the rational design of new catalysts.
DOI
10.1039/d2dt03212k
Appears in Collections:
자연과학대학 > 화학·나노과학전공 > Journal papers
Files in This Item:
There are no files associated with this item.
Export
RIS (EndNote)
XLS (Excel)
XML


qrcode

BROWSE