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TETRAPHOSPHACUBANE - AN UNEXPECTEDLY STRONG BASE IN THE GAS PHASE

机译:四磷酸PH-气相中异常强的碱

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The experimental determination of physical properties of tetra-tert-butylphosphocubane (TtBuPC) is of paramount importance for understanding the reactivity of this fascinating molecule. The gasphase basicity of TtBuPC measured by FT-ICR spectroscopy (GB = 221.8 kcal mol(-1), PA = 230.5 kcal mol(-1)) is surprisingly high although protonation in solution is only achieved under drastic conditions. A molecular orbital treatment, including electron correlation effects, predicts the unsubstituted parent compound phosphacubane (PC) to be a carbon base. Carbon protonation implies a P-C bond fission which alleviates the strain of the system. A similar behavior is also predicted for the tetramethyl derivative. However, TtBuPC is found to be a phosphorus base, because the strong repulsive interactions which appear between the tert-butyl substituents destabilize significantly the C-protonated form. These effects decrease dramatically when just one tert-butyl group is removed and both P- and C-protonated species become almost degenerate. As for other strained systems, the PAs of PC and TtBuPC are only adequately reproduced when G2-type [6-311+(3df,2p)] basis sets are used. [References: 33]
机译:为了确定这种迷人分子的反应性,实验确定四叔丁基膦基膦(TtBuPC)的物理性质至关重要。尽管仅在剧烈条件下才能实现溶液中的质子化,但通过FT-ICR光谱法(GB = 221.8 kcal mol(-1),PA = 230.5 kcal mol(-1))测得的TtBuPC气相碱性很高。包括电子相关效应在内的分子轨道处理预测未取代的母体化合物phosphacubane(PC)是碳碱。碳质子化意味着P-C键裂变,从而减轻了系统的应变。还预测了四甲基衍生物的类似行为。然而,发现TtBuPC是磷碱,因为在叔丁基取代基之间出现的强烈排斥相互作用使C-质子化形式明显不稳定。当仅除去一个叔丁基并且P和C质子化的物种几乎都退化时,这些作用会大大降低。对于其他应变系统,只有使用G2型[6-311 +(3df,2p)]基集时,才能充分复制PC和TtBuPC的PA。 [参考:33]

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