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MECHANISM OF PALLADIUM-CATALYZED TRANSFER HYDROGENOLYSIS OF ARYL CHLORIDES BY FORMATE SALTS

机译:甲酸盐对钯催化芳族氯的转移加氢机理

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Chlorotoluene was hydrodehalogenated using formic acid and its salts in the presence of palladium-on-carbon (10% Pd/C). The hydrogen-donating ability of formate salts was found to depend on the counterion of the formates. The activity decreased in the order: Cs+ approximate to K+ > NH4+ > Na+ > NHEt(3)(+) > Li+ > H+. The addition of a base such as ammonium acetate to HCOOH accelerated the hydrogenolysis reaction rate establishing that HCOO- ion is essential for the reaction to proceed. Similarly, addition of a potassium salt to lithium formate increased the rate, again suggesting the importance of the counterion. Hydrogenolysis experiments using molecular hydrogen revealed that HCl formed during the reaction deactivated the catalyst but did not poison it completely. Kinetic studies showed that the rate of hydrodechlorination by the transfer process was independent of the substrate (2-chlorotoluene) concentration. Both hydrogen donor (HCOONa) and the catalyst (10% Pd/C) exhibited first order dependence. Based on the kinetic data and the observed isotope effect, a mechanism has been proposed involving abstraction of formyl hydrogen by the catalyst as the rate-limiting step. The rate expression derived was R = k' [HCOONa][Pd/C]. At higher concentrations of hydrogen donor, the dissociation of HCOONa was affected and as a consequence the rate expression changed to R = k'alpha[HCOONa][Pd/Cl], where alpha is the degree of dissociation of HCOONa. [References: 38]
机译:在钯/碳(10%Pd / C)存在下,使用甲酸及其盐将氯甲苯加氢脱卤。发现甲酸盐的供氢能力取决于甲酸酯的抗衡离子。活性依次降低:Cs +近似于K +> NH4 +> Na +> NHEt(3)(+)> Li +> H +。向HCOOH中添加碱(如乙酸铵)可加快氢解反应速度,从而确定HCOO-离子对于进行反应至关重要。类似地,向甲酸锂中添加钾盐可提高速率,再次表明抗衡离子的重要性。使用分子氢的氢解实验表明,反应过程中形成的HCl使催化剂失活,但并未完全中毒。动力学研究表明,转移过程中加氢脱氯的速率与底物(2-氯甲苯)的浓度无关。氢给体(HCOONa)和催化剂(10%Pd / C)均表现出一级依赖性。基于动力学数据和观察到的同位素效应,提出了一种机制,该机制涉及通过催化剂提取甲酰基氢作为限速步骤。得出的速率表达式为R = k'[HCOONa] [Pd / C]。在较高浓度的氢供体下,HCOONa的解离受到影响,结果速率表达变为R = k'alpha [HCOONa] [Pd / Cl],其中α是HCOONa的解离度。 [参考:38]

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