Amorim Fábio J, Caramori Giovanni F
Departamento de Química, Universidade Federal de Santa Catarina, Campus Universitário Trindade, 88040-900 Florianópolis, SC, Brazil.
ACS Phys Chem Au. 2024 Dec 10;5(1):101-111. doi: 10.1021/acsphyschemau.4c00089. eCollection 2025 Jan 22.
The present study elucidated the role of both hydrogen and halogen bonds, from an electronic structure perspective, in the anion recognition process by the [2]catenane () containing a moiety with hydrogen bond donors entangled with another macrocyclic halogen bond donor. Spherical and nonspherical anions have been employed. The roles of different σ-hole donors have also been considered. The structure of was modified by incorporating other σ-hole donors, namely bromine, chlorine, fluorine, as well as -Te-CH as a chalcogen bond donor, leading to the modified [2]catenanes -. Insights into anion recognition were gained by quantifying the contributions of not only the mechanical but also hydrogen and halogen/chalcogen bonds to anion recognition using the GKS-EDA energy partition scheme and homodesmostic reactions scheme. GKS-EDA reveals that the anions Cl and TS exhibit the most stabilizing interactions with the binding pocket. The EDA results confirm that by changing from a stronger σ-hole donor (I) to a weaker σ-hole donor (F) will have a considerable impact on anion interaction, thereby demonstrating that the halogen bonds formed between the [2]catenane and the anion play a pivotal role.
本研究从电子结构角度阐明了氢键和卤键在由含有与另一个大环卤键供体缠结的氢键供体部分的[2]连环烷()进行阴离子识别过程中的作用。使用了球形和非球形阴离子。还考虑了不同σ-空穴供体的作用。通过并入其他σ-空穴供体,即溴、氯、氟,以及作为硫族键供体的-Te-CH,对的结构进行了修饰,从而得到了修饰后的[2]连环烷-。通过使用GKS-EDA能量划分方案和同系等键反应方案量化机械键以及氢键和卤键/硫族键对阴离子识别的贡献,深入了解了阴离子识别。GKS-EDA表明,阴离子Cl和TS与结合口袋表现出最稳定的相互作用。EDA结果证实,从较强的σ-空穴供体(I)转变为较弱的σ-空穴供体(F)将对阴离子相互作用产生相当大的影响,从而证明[2]连环烷与阴离子之间形成的卤键起着关键作用。