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Competition between Intra and Intermolecular Triel Bonds. Complexes between Naphthalene Derivatives and Neutral or Anionic Lewis Bases

机译:分子内和分子间Triel键之间的竞争。萘衍生物与中性或阴离子路易斯碱之间的络合物

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摘要

A TrF group (Tr = B, Al, Ga, In, Tl) is placed on one of the α positions of naphthalene, and its ability to engage in a triel bond (TrB) with a weak (NCH) and strong (NC ) nucleophile is assessed by ab initio calculations. As a competitor, an NH group is placed on the neighboring C , from which point it forms an intramolecular TrB with the TrF group. The latter internal TrB reduces the intensity of the π-hole on the Tr atom, decreasing its ability to engage in a second external TrB. The intermolecular TrB is weakened by a factor of about two for the smaller Tr atoms but is less severe for the larger Tl. The external TrB can be quite strong nonetheless; it varies from a minimum of 8 kcal/mol for the weak NCH base, up to as much as 70 kcal/mol for CN . Likewise, the appearance of an external TrB to a strong base like CN lessens the ability of the Tr to engage in an internal TrB, to the point where such an intramolecular TrB becomes questionable.
机译:一个TrF基团(Tr = B,Al,Ga,In,Tl)置于萘的一个α位置上,并且其以弱(NCH)和强(NC)的三元键(TrB)参与的能力亲核试剂通过从头算来评估。作为竞争者,NH基团位于相邻的C上,从这一点开始,它与TrF基团形成分子内TrB。后者的内部TrB降低了Tr原子上π孔的强度,从而降低了其与第二个外部TrB接合的能力。对于较小的Tr原子,分子间的TrB被削弱约两倍,而对于较大的T1,分子间的TrB不那么严重。不过,外部TrB可能非常强大。它从弱NCH碱的最低8 kcal / mol到CN的最高70 kcal / mol不等。同样,外部TrB出现在像CN这样的强碱上会降低Tr进入内部TrB的能力,以至于这种分子内TrB成为问题。

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