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Acylation Reactions of Dibenzo‐7‐phosphanorbornadiene: DFT Mechanistic Insights

机译:二苯并-7-膦基降冰片二烯的酰化反应:DFT机制的见解

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摘要

Extensive DFT calculations provide deep mechanistic insights into the acylation reactions of tert‐butyl dibenzo‐7‐phosphanobornadiene with PhCOX (X=Cl, Br, I, OTf) in CH2Cl2 solution. Such reactions are initialized by the nucleophilic P⋅⋅⋅C attack to the carbonyl group to form the acylphosphonium intermediate >A+ together with X anion, followed either by nucleophilic X⋅⋅⋅P attack (X=Cl, Br, and I) toward >A+ to eliminate anthracene or by slow rearrangement or decomposition of >A+ (X=OTf). In contrast to the first case (X=Cl) that is rate‐limited by the initial P⋅⋅⋅C attack, other reactions are rate‐limited by the second X⋅⋅⋅P attack for X=Br and I and even thermodynamically prevented for X=OTf, leading to isolable phosphonium salts. The rearrangement of phosphonium >A+ is initiated by a P‐C bond cleavage, followed either by sequential proton‐shifts to form anthracenyl acylphosphonium or by deprotonation with additional base Et3N to form neutral anthracenyl acylphosphine. Our DFT results strongly support the separated acylphosphonium >A+ as the key reaction intermediate that may be useful for the transfer of acylphosphenium in general.
机译:广泛的DFT计算提供了对叔丁基二苯并-7-膦基降冰片二烯与PhCOX(X = Cl,Br,I,OTf)在CH2Cl2溶液中的酰化反应的深入机理研究。此类反应是通过亲核性的P⋅⋅⋅C攻击羰基而引发的,与X -阴离子一起形成酰基phosph中间体> A + ,然后对> A + 进行亲核X -⋅⋅⋅P攻击(X = Cl,Br和I)以消除蒽或通过> A + (X = OTf)的缓慢重新排列或分解。与第一种情况(X = Cl)受到初始P⋅⋅⋅C攻击的速率限制相比,其他反应受到第二种X ⋅⋅⋅P攻击的速率限制X = Br和I,甚至热力学上防止X = OTf,导致可分离的phospho盐。 strong > A + 的重排是通过P–C键裂解开始的,然后依次进行质子转移以形成蒽基酰基phosph或通过与其他碱Et3N脱质子化而形成中性蒽基酰基膦。我们的DFT结果强烈支持分离的酰基phosph > A + 作为关键的反应中间体,通常可用于转移酰基phosph。

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