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Halogen bonds in some dihalogenated phenols: applications to crystal engineering

机译:一些二卤代苯酚中的卤素键:在晶体工程中的应用

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摘要

3,4-Dichlorophenol (>1) crystallizes in the tetragonal space group I41/a with a short axis of 3.7926 (9) Å. The structure is unique in that both type I and type II Cl⋯Cl interactions are present, these contact types being distinguished by the angle ranges of the respective C—Cl⋯Cl angles. The present study shows that these two types of contacts are utterly different. The crystal structures of 4-bromo-3-chlorophenol (>2) and 3-bromo-4-chlorophenol (>3) have been determined. The crystal structure of (>2) is isomorphous to that of (>1) with the Br atom in the 4-position participating in a type II interaction. However, the monoclinic P21/c packing of compound (>3) is different; while the structure still has O—H⋯O hydrogen bonds, the tetramer O—H⋯O synthon seen in (>1) and (>2) is not seen. Rather than a type I Br⋯Br interaction which would have been mandated if (>3) were isomorphous to (>1) and (>2), Br forms a Br⋯O contact wherein its electrophilic character is clearly evident. Crystal structures of the related compounds 4-chloro-3-iodophenol (>4) and 3,5-dibromophenol (>5) were also determined. A computational survey of the structural landscape was undertaken for (>1), (>2) and (>3), using a crystal structure prediction protocol in space groups P21/c and I41/a with the COMPASS26 force field. While both tetragonal and monoclinic structures are energetically reasonable for all compounds, the fact that (>3) takes the latter structure indicates that Br prefers type II over type I contacts. In order to differentiate further between type I and type II halogen contacts, which being chemically distinct are expected to have different distance fall-off properties, a variable-temperature crystallography study was performed on compounds (>1), (>2) and (>4). Length variations with temperature are greater for type II contacts compared with type I. The type II Br⋯Br interaction in (>2) is stronger than the corresponding type II Cl⋯Cl interaction in (>1), leading to elastic bending of the former upon application of mechanical stress, which contrasts with the plastic deformation of (>1). The observation of elastic deformation in (>2) is noteworthy; in that it finds an explanation based on the strengths of the respective halogen bonds, it could also be taken as a good starting model for future property design. Cl/Br isostructurality is studied with the Cambridge Structural Database and it is indicated that this isostructurality is based on shape and size similarity of Cl and Br, rather than arising from any chemical resemblance.
机译:3,4-二氯苯酚(> 1 )在四角形空间群I41 / a中结晶,短轴为3.7926(9)Å。该结构的独特之处在于,同时存在I型和II型Cl⋯Cl相互作用,这些接触类型通过相应的C-Cl⋯Cl角的角度范围来区分。本研究表明,这两种类型的联系完全不同。确定了4-溴-3-氯苯酚(> 2 )和3-溴-4-氯苯酚(> 3 )的晶体结构。 (> 2 )的晶体结构与(> 1 )的晶体结构同构,其中4位上的Br原子参与II型相互作用。但是,化合物(> 3 )的单斜P21 / c填料不同;尽管该结构仍具有O-H⋯O氢键,但看不到在(> 1 )和(> 2 )中看到的四聚体O-H⋯O合成子。而不是如果(> 3 )与(> 1 )和(> 2 )同构的I型Br⋯Br相互作用, Br形成Br = O接触,其中其亲电特性显而易见。还测定了相关化合物4-氯-3-碘苯酚(> 4 )和3,5-二溴苯酚(> 5 )的晶体结构。使用晶体结构预测协议对(> 1 ),(> 2 )和(> 3 )进行了结构景观的计算调查。带有COMPASS26力场的空间组P21 / c和I41 / a。对于所有化合物,四方和单斜结构在能量上都是合理的,但(> 3 )具有后一种结构这一事实表明,Br比I型触点更喜欢II型触点。为了进一步区分化学上不同的I型和II型卤素触点具有不同的距离衰减特性,对化合物(> 1 )进行了可变温度晶体学研究, (> 2 )和(> 4 )。与I型接触相比,II型接触的长度随温度变化更大。(> 2 )中的II型Br⋯Br相互作用强于(> 1 ),导致前者在施加机械应力时发生弹性弯曲,与(> 1 )的塑性变形形成对比。在(> 2 )中观察到的弹性变形是值得注意的;因为它基于各个卤素键的强度找到了一种解释,所以它也可以作为未来性能设计的一个很好的初始模型。利用剑桥结构数据库研究了Cl / Br的同构性,表明该同构性是基于Cl和Br的形状和尺寸相似性,而不是由于任何化学相似性引起的。

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