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首页> 外文期刊>Acta Crystallographica, Section B. Structural science, crystal engineering and materials >Electronic criterion for categorizing the chalcogen and halogen bonds: sulfur-iodine interactions in crystals
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Electronic criterion for categorizing the chalcogen and halogen bonds: sulfur-iodine interactions in crystals

机译:用于对硫致原和卤素键进行分类的电子标准:晶体中的硫 - 碘相互作用

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摘要

Diversity of mutual orientations of Y-S and I-X and covalent bonds in molecular crystals complicate categorizing noncovalent chalcogen and halogen bonds. Here, the different types of S···I interactions with short interatomic distances are analysed. The selection of S···I interactions for the categorization of the chalcogen and halogen bonds has been made using angles that determine the mutual orientation of electron lone pairs and σ-holes interacted S and I atoms. In complicated cases of noncovalent interactions with ‘hole-to-hole’ of S and I orientations, distinguishing the chalcogen and halogen bonds is only possible if the atom is uniquely determined, which also provides the electrophilic site. The electronic criterion for chalcogen/halogen bonds categorizing that is based on analysis of dispositions of electron density and electrostatic potential minima along the interatomic lines has been suggested and its effectiveness has been demonstrated.
机译:分子晶体中Y-S和I-X和I-X的相互取向的多样性使非共价硫致原性和卤素键复制。 这里,分析了不同类型的S ......我与短网状距离的相互作用进行了分析。 已经使用测定电子孤立对的相互取向和相互作用的S和I原子的相互取向的角度来进行S ... I相互作用。 在与S和I取向的“孔孔”的非共价相互作用的复杂情况下,仅区分硫致原和卤素键,仅在唯一确定原子,这也提供了亲电子部位。 已经提出了基于电子密度分析的核苷酸/卤素键分类的电子标准,并提出了沿着内部线的静电潜在的潜在MIMILA的分析,并证明了其有效性。

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