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负载于硅铝酸盐上的镍单体催化烯烃二聚反应机理及活性位点的理论评估:(Ni-OH)中心与路易斯酸碱对介导的C-C偶联反应

Theoretical Assessment of the Mechanism and Active Sites in Alkene Dimerization on Ni Monomers Grafted onto Aluminosilicates: (Ni-OH) Centers and C-C Coupling Mediated by Lewis Acid-Base Pairs.

作者信息

Jaegers Nicholas R, Iglesia Enrique

机构信息

Department of Chemical and Biomolecular Engineering, University of California at Berkeley, Berkeley, California 94720, United States.

出版信息

J Am Chem Soc. 2023 Mar 22;145(11):6349-6361. doi: 10.1021/jacs.2c13487. Epub 2023 Mar 13.

Abstract

Ni-based solids are effective catalysts for alkene dimerization, but the nature of active centers and identity and kinetic relevance of bound species and elementary reactions remain speculative and based on organometallic chemistry. Ni centers grafted onto ordered MCM-41 mesopores lead to well-defined monomers that are rendered stable by the presence of an intrapore nonpolar liquid, thus enabling accurate experimental inquiries and indirect evidence for grafted (Ni-OH) monomers. Density functional theory (DFT) treatments presented here confirm the plausible involvement of pathways and active centers not previously considered as mediators of high turnover rates for C-C alkenes at cryogenic temperatures. (Ni-OH) species act as Lewis acid-base pairs that stabilize C-C coupling transition states by polarizing two alkenes in opposite directions via concerted interactions with the O and H atoms in these pairs. DFT-derived activation barriers for ethene dimerization (59 kJ mol) are similar to measured values (46 ± 5 kJ mol) and the weak binding of ethene on (Ni-OH) is consistent with kinetic trends that require sites to remain essentially bare at subambient temperatures and high alkene pressures (1-15 bar). DFT treatments of classical metallacycle and Cossee-Arlman dimerization routes (Ni and Ni-H grafted onto Al-MCM-41, respectively) show that such sites bind ethene strongly and lead to saturation coverages, in contradiction with observed kinetic trends. These C-C coupling routes at acid-base pairs in (Ni-OH) differ from molecular catalysts in (i) the type of elementary steps; (ii) the nature of active centers; and (iii) their catalytic competence at subambient temperatures without requiring co-catalysts or activators.

摘要

镍基固体是烯烃二聚反应的有效催化剂,但活性中心的性质、结合物种的身份和动力学相关性以及基元反应仍具有推测性,且基于有机金属化学。接枝到有序MCM - 41介孔上的镍中心会生成定义明确的单体,孔内非极性液体的存在使其变得稳定,从而能够进行准确的实验探究,并为接枝的(Ni - OH)单体提供间接证据。本文提出的密度泛函理论(DFT)处理证实了低温下碳 - 碳烯烃高周转率的介导途径和活性中心的合理参与,而这些途径和活性中心此前未被视为介导因素。(Ni - OH)物种作为路易斯酸碱对,通过与这些对中的O和H原子协同相互作用,以相反方向极化两个烯烃,从而稳定碳 - 碳偶联过渡态。DFT得出的乙烯二聚反应活化能垒(59 kJ/mol)与测量值(46±5 kJ/mol)相似,并且乙烯在(Ni - OH)上的弱结合与动力学趋势一致,该趋势要求位点在环境温度以下和高烯烃压力(1 - 15 bar)下基本保持裸露状态。对经典金属环和科斯see - 阿尔曼二聚反应途径(分别将Ni和Ni - H接枝到Al - MCM - 41上)的DFT处理表明,这些位点会强烈结合乙烯并导致饱和覆盖,这与观察到的动力学趋势相矛盾。(Ni - OH)中酸碱对处的这些碳 - 碳偶联途径在以下方面与分子催化剂不同:(i)基元步骤的类型;(ii)活性中心的性质;以及(iii)它们在环境温度以下无需助催化剂或活化剂的催化能力。

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