Zapata Fabiola, Caballero Antonio, Molina Pedro, Alkorta Ibon, Elguero José
Departamento de Química Orgánica, Universiad de Murcia , Campus de Espinardo, E-30100 Murcia, Spain.
J Org Chem. 2014 Aug 1;79(15):6959-69. doi: 10.1021/jo501061z. Epub 2014 Jul 23.
We have designed a series of triazolium-pyrene-based dyads to probe their potential as fluorescent chemosensors for anion recognition through combinations of hydrogen and halogen bonding. Cooperation between the two distinct noncovalent interactions leads to an unusual effect on receptor affinity, as a result of fundamental differences in the interactions of halogen and hydrogen bond donor groups with anions. Absorption, emission spectrophotometries and proton and phosphorus NMR spectroscopies indicate that the two interactions act in concert to achieve the selective binding of the hydrogen pyrophosphate anion, a conclusion supported by computational studies. Hence, as clearly demonstrated with respective halogen- and hydrogen-bonding triazolium receptors, the integration of a halogen atom into the anion receptor at the expense of one hydrogen-bonding receptor greatly influences the anion recognition affinity of the receptor. The association constant values of the halogen-bonding complexes are larger than the hydrogen-bonding counterpart. Thus, halogen bonding has been exploited for the selective fluorescent sensing of hydrogen pyrophosphate anion. Halogen bonding has been demonstrated to increase the strength of hydrogen pyrophosphate binding, as compared to the hydrogen-bonded analogue. Grimme's PBE-D functional, which adequately reproduces the pyrene stacking energies, has been successfully applied to model the affinity for anions, especially hydrogen pyrophosphate, of the new receptors.
我们设计了一系列基于三唑鎓-芘的二元化合物,通过氢键和卤键的组合来探究它们作为阴离子识别荧光化学传感器的潜力。两种不同的非共价相互作用之间的协同作用对受体亲和力产生了异常影响,这是由于卤键和氢键供体基团与阴离子相互作用的根本差异所致。吸收光谱、发射光谱以及质子和磷核磁共振光谱表明,这两种相互作用协同作用以实现焦磷酸氢根阴离子的选择性结合,这一结论得到了计算研究的支持。因此,正如分别用卤键和氢键三唑鎓受体所清楚证明的那样,以牺牲一个氢键受体为代价将卤原子整合到阴离子受体中会极大地影响受体的阴离子识别亲和力。卤键配合物的缔合常数大于氢键配合物。因此,卤键已被用于焦磷酸氢根阴离子的选择性荧光传感。与氢键类似物相比,卤键已被证明可增强焦磷酸的结合强度。Grimme的PBE-D泛函能够充分再现芘堆积能,已成功应用于模拟新受体对阴离子,尤其是焦磷酸氢根的亲和力。