首页> 美国卫生研究院文献>Wiley-Blackwell Online Open >The Palladium Acetate‐Catalyzed Microwave‐Assisted Hirao Reaction without an Added Phosphorus Ligand as a Green Protocol: A Quantum Chemical Study on the Mechanism
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The Palladium Acetate‐Catalyzed Microwave‐Assisted Hirao Reaction without an Added Phosphorus Ligand as a Green Protocol: A Quantum Chemical Study on the Mechanism

机译:乙酸钯催化的微波辅助的Hirao反应没有添加磷配体作为绿色方案:机理的量子化学研究

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摘要

It was proved by our experiments that on microwave irradiation, the mono‐ or bidentate phosphorus ligands generally applied in the palladium(II)‐catalyzed P–C coupling reaction of aryl bromides and dialkyl phosphites or secondary phosphine oxides may be substituted by the excess of the >P(O)H reagent that exists under a tautomeric equilibrium. Taking into account that the reduction of the palladium(II) salt and the ligation of the palladium(0) so formed requires 3 equivalents of the P‐species for the catalyst applied in a quantity of 5–10%, all together, 15–30% of the P‐reagent is necessary beyond its stoichiometric quantity. In the coupling reaction of diphenylphosphine oxide, it was possible to apply diethyl phosphite as the reducing agent and as the P‐ligand. The reactivities of the diethyl phosphite and diphenylphosphine oxide reagents were compared in a competitive reaction. The mechanism and the energetics of this new variation of the Hirao reaction of bromobenzene with Y2P(O)H reagents (Y=EtO and Ph) was explored by quantum chemical calculations. The first detailed study on simple reaction models justified our assumption that, under the conditions of the reaction, the trivalent form of the >P(O)H reagent may serve as the P‐ligand in the palladium(0) catalyst, and shed light on the fine mechanism of the reaction sequence. The existence of the earlier described bis(palladium complex) {[H(OPh2P)2PdOAc]2} was refuted by high level theoretical calculations. This kind of complex may be formed only with chloride anions instead of the acetate anion. The interaction of palladium acetate and Y2P(O)H may result in only the formation of the [(HO)Y2P]2Pd complex that is the active catalyst in the Hirao reaction. The new variation of the Hirao reaction is of a more general value, and represents the greenest protocol, as there is no need for the usual P‐ligands. Instead, the >P(O)H reagent should be used in an excess of up to 30%. Hence, the costs and environmental burdens may be decreased.
机译:我们的实验证明,在微波辐射下,通常用钯(II)催化的芳基溴化物与亚磷酸二烷基酯或仲膦氧化物的P–C偶联反应中使用的单或双齿磷配体可能被过量的在互变异构平衡下存在的> P(O)H试剂。考虑到钯(II)盐的还原和所形成的钯(0)的连接需要3-5当量的P-物种用于催化剂,其用量为5-10%,合计为15-超出其化学计量数量的30%的P试剂是必需的。在二苯膦氧化物的偶联反应中,可以使用亚磷酸二乙酯作为还原剂和P-配体。在竞争反应中比较了亚磷酸二乙酯和二苯膦氧化物试剂的反应性。通过量子化学计算探讨了溴苯与Y2P(O)H试剂(Y = EtO和Ph)的Hirao反应这一新变化的机理和能量学。对简单反应模型的首次详细研究证明了我们的假设,即在反应条件下,> P(O)H试剂的三价形式可作为钯(0)催化剂中的P-配体,从而为人们所了解。反应顺序的精细机理。较高水平的理论计算驳斥了较早描述的双(钯配合物){[H(OPh2P)2PdOAc] 2}的存在。这种络合物只能与氯离子而不是乙酸根形成。乙酸钯与Y2P(O)H的相互作用可能仅导致[(HO)Y2P] 2Pd络合物的形成,该络合物是Hirao反应中的活性催化剂。 Hirao反应的新变体具有更一般的价值,并且代表了最绿色的方案,因为不需要常规的P-配体。相反,> P(O)H试剂的使用量最多应为30%。因此,可以减少成本和环境负担。

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