Shi Genggongwo, Aliakbar Tehrani Zahra, Kim Dongwook, Cho Woo Jong, Youn Il-Seung, Lee Han Myoung, Yousuf Muhammad, Ahmed Nisar, Shirinfar Bahareh, Teator Aaron J, Lastovickova Dominika N, Rasheed Lubna, Lah Myoung Soo, Bielawski Christopher W, Kim Kwang S
Department of Chemistry, Ulsan National Institute of Science and Technology (UNIST), Ulsan 44919, Korea.
Department of Chemistry, Pohang University of Science and Technology, Pohang 790-784, Korea.
Sci Rep. 2016 Jul 22;6:30123. doi: 10.1038/srep30123.
Since the aliphatic C-H···anion interaction is relatively weak, anion binding using hydrophobic aliphatic C-H (Cali-H) groups has generally been considered not possible without the presence of additional binding sites that contain stronger interactions to the anion. Herein, we report X-ray structures of organic crystals that feature a chloride anion bound exclusively by hydrophobic Cali-H groups. An X-ray structure of imidazolium-based scaffolds using Cali-H···A(-) interactions (A(-) = anion) shows that a halide anion is directly interacting with fifteen Cali-H groups (involving eleven hydrogen bonds, two bidentate hydrogen-bond-type binding interactions and two weakly hydrogen-bonding-like binding interactions). Additional supporting interactions and/or other binding sites are not observed. We note that such types of complexes may not be rare since such high numbers of binding sites for an anion are also found in analogous tetraalkylammonium complexes. The Cali-H···A(-) interactions are driven by the formation of a near-spherical dipole layer shell structure around the anion. The alternating layers of electrostatic charge around the anion arise because the repulsions between weakly positively charged H atoms are reduced by the presence of the weakly negatively charged C atoms connected to H atoms.
由于脂肪族C-H···阴离子相互作用相对较弱,因此在没有与阴离子存在更强相互作用的额外结合位点的情况下,利用疏水性脂肪族C-H(Cali-H)基团进行阴离子结合通常被认为是不可能的。在此,我们报道了有机晶体的X射线结构,其特征是氯离子阴离子仅由疏水性Cali-H基团结合。基于咪唑鎓的支架利用Cali-H···A(-)相互作用(A(-)=阴离子)的X射线结构表明,卤化物阴离子直接与十五个Cali-H基团相互作用(涉及十一个氢键、两个双齿氢键型结合相互作用和两个弱氢键样结合相互作用)。未观察到额外的支持性相互作用和/或其他结合位点。我们注意到,这类配合物可能并不罕见,因为在类似的四烷基铵配合物中也发现了如此多的阴离子结合位点。Cali-H···A(-)相互作用是由阴离子周围形成近球形偶极层壳结构驱动的。阴离子周围静电电荷的交替层出现是因为与氢原子相连的弱负电荷碳原子的存在减少了弱正电荷氢原子之间的排斥力。