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Hypervalency and recoupled pair bonding in the p-block elements

机译:p块元素中的超价和再结合对键合

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The nature of the bonding in hypervalent molecules has long been a topic of discussion with a number of explanations being offered to rationalize the apparent violation of the octet rule. By examining the formation of the second row fluorides, XFn-1+F-->XFn (X=P, S, Cl), we found that a new type of bond is present in these compounds, the recoupled pair bond, which is distinct from other types of chemical bonds. A recoupled pair bond occurs when it is energetically favorable to uncouple an existing pair of electrons to form bonds, which is favorable for most of the valence s2 and p2 pairs in P, S, and Cl. The interplay between the formation of normal covalent bonds and recoupled pair bonds in the XFn species readily explains the structures of these species as well as the large variations observed in the XFn-1-F bond energies. In addition, the formation of recoupled pair bonds leads to the presence of unexpected low-lying excited states in the XFn molecules. We also consider the significant parallels that exist between the XFn families and the YHn families, where Y=Be, B and C. The latter species also involve recoupled pair bonding, which accounts for the divalence of Be, the trivalence of B and the tetravalence of C without invoking the concept of hybridization.
机译:高价分子中键的性质长期以来一直是讨论的主题,并提供了许多解释以使对八位位组规则的明显违反合理化。通过检查第二排氟化物XFn-1 + F-> XFn(X = P,S,Cl)的形成,我们发现这些化合物中存在一种新型键,即重耦合对键,即与其他类型的化学键不同。当在能量上有利于解开现有电子对以形成键时,就会发生重耦合对键,这对P,S和Cl中的大多数价s2和p2对来说是有利的。 XFn物种中正常共价键和再耦合对键的形成之间的相互作用很容易解释了这些物种的结构以及XFn-1-F键能中观察到的巨大变化。另外,重新耦合的对键的形成导致XFn分子中出现意想不到的低价激发态。我们还考虑了XFn家族和YHn家族之间存在的显着相似之处,其中Y = Be,B和C。后一种物种还涉及重耦合对,这说明了Be的价,B的三价和四价。 C语言而无需调用杂交的概念。

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