Anjali Bai Amutha, Suresh Cherumuttathu H
Chemical Sciences and Technology Division, CSIR-National Institute for Interdisciplinary Science and Technology, Trivandrum 695019, India.
Academy of Scientific & Innovative Research (AcSIR), New Delhi 110020, India.
ACS Omega. 2017 Aug 3;2(8):4196-4206. doi: 10.1021/acsomega.7b00745. eCollection 2017 Aug 31.
A B3LYP density functional theory study on the oxidative addition of halogenobenzenes and toluene to monoligated zerovalent palladium catalysts (Pd-L) has been carried out using the "L" ligands such as phosphines, N-heterocyclic carbenes, alkynes, and alkenes. The electron deficiency of the undercoordinated Pd in Pd-L is quantified in terms of the molecular electrostatic potential at the metal center ( ), which showed significant variation with respect to the nature of the L ligand. Further, a strong linear correlation between Δ and the activation barrier ( ) of the reaction is established. The correlation plots between Δ and suggest that a priori prediction on the ability of the palladium complex to undergo oxidative addition is possible from analysis. In general, as the electron-donating nature of ligand increases, the suitability of Pd(0) catalyst to undergo oxidative addition increases. measures the electron-rich/-deficient nature of the metal center and provides a quantitative measure of the reactivity of the catalyst. By tuning the value, efficient catalysts can be designed.
使用膦、N-杂环卡宾、炔烃和烯烃等“L”配体,对卤代苯和甲苯与单配位零价钯催化剂(Pd-L)的氧化加成反应进行了B3LYP密度泛函理论研究。Pd-L中配位不足的Pd的电子缺陷通过金属中心的分子静电势( )进行量化,结果表明其随L配体的性质有显著变化。此外,还建立了Δ 与反应活化能垒( )之间的强线性相关性。Δ 与 之间的相关图表明,通过 分析可以对钯配合物进行氧化加成反应的能力进行先验预测。一般来说,随着配体给电子性质的增加,Pd(0)催化剂进行氧化加成反应的适用性增加。 衡量了金属中心的富电子/缺电子性质,并提供了催化剂反应活性的定量度量。通过调节 值,可以设计出高效催化剂。