Preference in the Type of Halogen Bonding Interactions within Co-Crystals of Anthraquinone with a Pair of Isosteric Perhalobenzenes

Crystals Pub Date : 2024-03-30 DOI:10.3390/cryst14040325
Eric Bosch, D. Unruh, Richard K. Brooks, H. Krueger, R. Groeneman
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Abstract

The preference in the type of halogen bond accepted by anthraquinone (C14H8O2) from two isosteric donors, namely 1,4-diiodoperfluorobenzene (C6I2F4) and 1,4-diiodoperchlorobenzene (C6I2Cl4), is reported. The two co-crystals, (C6I2F4)·(C14H8O2) and (C6I2Cl4)·(C14H8O2), are sustained primarily by I···O rather than π-type halogen bonds to form these multicomponent solids. The ability for each component to engage in two divergent halogen-bonding interactions generates a one-dimensional chain structure for each co-crystal. The bias in the halogen-bonding type is due to the difference in electrostatic potential between the carbonyl oxygen and the aromatic surface on the anthraquinone. To support this observed preference, the binding energies of the I···O halogen bond were quantified for both co-crystals by using density functional theory calculations and then compared to the interaction energy for related π-type halogen bond from previously reported structures.
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蒽醌与一对异甾族过卤苯共晶体中卤素键相互作用类型的偏好
报告了蒽醌(C14H8O2)从两种同位供体(即 1,4-二碘全氟苯(C6I2F4)和 1,4-二碘全氯苯(C6I2Cl4))接受卤键类型的偏好。(C6I2F4)-(C14H8O2)和(C6I2Cl4)-(C14H8O2)这两种共晶体主要通过I--O而不是π型卤素键来形成这些多组分固体。每种成分都能参与两种不同的卤键相互作用,从而使每种共晶体形成一维链状结构。卤键类型的偏向是由于蒽醌上的羰基氧和芳香表面之间的静电势不同造成的。为了支持这种观察到的偏好,我们利用密度泛函理论计算对两种共晶体的 I-O 卤素键的结合能进行了量化,然后与之前报告的结构中相关的 π 型卤素键的相互作用能进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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