Swathi Krishna P E, Babu Hruidya C, Nair Nanditha G, Hariharan Mahesh
School of Chemistry, Indian Institute of Science Education and Research Thiruvananthapuram (IISER TVM), 695551, Thiruvananthapuram, Kerala, India.
Chem Asian J. 2023 Mar 14;18(6):e202201248. doi: 10.1002/asia.202201248. Epub 2023 Feb 7.
Non-covalent halogen bonding interactions are quintessential in crystal engineering for the construction of distinctive supramolecular synthons. Here, we report the first crystalline evidences of unique boat and chair shaped cyclic hexahalogen synthons in the crystal structures of α,α,α',α',4-pentabromo-o-xylene (PBX) and α,α,α',α',4,5-hexabromo-o-xylene (HBX) respectively. Nature and stability of constituent interactions in the supramolecular synthons are scrutinized with the help of quantum-chemical calculations. Pendás' interacting quantum atoms approach confirmed the stability of Br⋅⋅⋅Br interactions leading to boat and chair shaped synthons with major contribution from exchange-correlation. Although both the molecules are achiral in nature, the packing forces guide PBX to crystallize in the chiral space group P2 with a helix-like orientation while HBX packs in a centrosymmetric P2 /n space group. The extended furcations in the pentabromo derivative construct a molecular framework consisting of macrocycles realized through halogen bonding.
非共价卤素键相互作用在晶体工程中对于构建独特的超分子合成子至关重要。在此,我们分别报道了在α,α,α',α',4-五溴邻二甲苯(PBX)和α,α,α',α',4,5-六溴邻二甲苯(HBX)晶体结构中独特的船型和椅型环状六卤合成子的首个晶体证据。借助量子化学计算仔细研究了超分子合成子中组成相互作用的性质和稳定性。彭达斯的相互作用量子原子方法证实了Br⋅⋅⋅Br相互作用导致船型和椅型合成子的稳定性,其中交换相关起主要作用。尽管这两种分子本质上都是非手性的,但堆积力引导PBX在手性空间群P2中以螺旋状取向结晶,而HBX堆积在中心对称的P2 /n空间群中。五溴衍生物中的扩展分叉构建了一个由通过卤素键实现的大环组成的分子框架。