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Lanthanide triflate-catalyzed arene acylation. Relation to classical Friedel-Crafts acylation

机译:镧系元素三氟甲磺酸酯催化的芳烃酰化。与经典Friedel-Crafts酰化的关系

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摘要

Lanthanide trifluoromethanesulfonates, Ln(OTf)(3) (OTf- = trifluoromethanesulfonate), serve as effective precatalysts for the rapid, regioselective, intermolecular acylation of activated arenes. This contribution probes mechanism and metal ionic radius effects in the catalytic lanthanide triflate-mediated acylation of anisole with acetic anhydride. Kinetic studies of Ln(OTf)(3) (Ln = La, Eu, Yb, Lu)-mediated anisole acylation with acetic anhydride in nitromethane reveal the rate law v similar to k(3) [Ln(3+)](1)[acetic anhydride](1)[anisole](1). Eyring and Arrhenius analyses yield Delta H-double dagger = 12.9 (4) kcal.mol(-1), Delta S-double dagger = -44.8 (13) e.u., and E-a = 13.1 (4) kcal.mol(-1) for Ln = Yb, with the negative Delta S-double dagger implying a highly organized transition state. The observed primary kinetic isotope effect of k(H)/k(D) = 2.6 +/- 0.15 is consistent with arene C-H bond scission in the turnover-limiting step. The proposed catalytic pathway involves precatalyst formation via interaction of Ln(OTf)3 with acetic anhydride, followed by Ln(3+)-anisole pi-complexation, substrate-electrophile sigma-complex formation, and turnover-limiting C-H bond scission. Lanthanide size effects on turnover frequencies are consistent with a transition state lacking significant ionic radius-dependent steric constraints. Substrate-Ln(3+) interactions using paramagnetic Gd3+ and Yb3+ NMR probes and factors affecting reaction rates such as arene substituent and added LiClO4 cocatalyst are also explored.
机译:镧系三氟甲烷磺酸盐Ln(OTf)(3)(OTf- =三氟甲烷磺酸盐)可作为有效的预催化剂,用于快速,区域选择性,分子间酰化活化的芳烃。该贡献探讨了在三氟甲磺酸镧系元素介导的苯甲醚与乙酸酐的酰化反应中的机理和金属离子半径效应。 Ln(OTf)(3)(Ln = La,Eu,Yb,Lu)介导的苯甲酰苯胺在硝基甲烷中的动力学研究表明速率法v类似于k(3)[Ln(3 +)](1 )[乙酸酐](1)[茴香醚](1)。 Eyring和Arrhenius分析得出Delta H-双匕首= 12.9(4)kcal.mol(-1),Delta S-双匕首= -44.8(13)eu和Ea = 13.1(4)kcal.mol(-1)对于Ln = Yb,负Delta S-double匕首意味着高度有组织的过渡态。观察到的k(H)/ k(D)= 2.6 +/- 0.15的主要动力学同位素效应与在营业额限制步骤中的芳烃C-H键断裂相符。拟议的催化途径涉及通过Ln(OTf)3与乙酸酐的相互作用形成预催化剂,然后进行Ln(3 +)-苯甲醚pi络合,底物-亲电sigma络合物形成和营业额限制的C-H键断裂。镧系元素尺寸对周转频率的影响与缺乏明显的离子半径依赖性空间约束的过渡态一致。还探讨了使用顺磁性Gd3 +和Yb3 + NMR探针的底物-Ln(3+)相互作用以及影响反应速率的因素,例如芳烃取代基和添加的LiClO4助催化剂。

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