GIR MIOMeT, IU CINQUIMA/Quı́mica Inorgánica, Facultad de Ciencias, Universidad de Valladolid, E-47011 Valladolid, Spain.
J Org Chem. 2020 Apr 3;85(7):4918-4926. doi: 10.1021/acs.joc.0c00072. Epub 2020 Mar 18.
An octapodal corannulene-based supramolecular system has been prepared by introducing eight corannulene moieties in a porphyrin scaffold. Despite the potential of this double picket fence porphyrin for double-tweezer behavior, NMR titrations show exclusive formation of 1:1 adducts. The system exhibits very strong affinity for C and C ( = (2.71 ± 0.08) × 10 and (2.13 ± 0.1) × 10 M, respectively), presenting selectivity for the latter. Density functional theory (DFT) calculations indicate that, in addition to the four corannulene units, the relatively flexible porphyrin tether actively participates in the recognition process, resulting in a strong synergistic effect. This leads to a very strong interaction with C, which in turn also induces a large structural change on the other face (second potential binding site), leading to a negative allosteric effect. We also introduced Zn in the porphyrin core in an attempt to modulate its flexibility. The resulting metalloporphyrin also displayed single-tweezer behavior, albeit with slightly smaller binding constants for C and C, suggesting that the effect of the coordination of fullerene to one face of our supramolecular platform was still transmitted to the other face, leading to the deactivation of the second potential binding site.
已制备了一种具有八元瓜环部分的卟啉超分子体系,该体系在卟啉骨架中引入了八个瓜环部分。尽管这种双篱式卟啉具有双重镊子行为的潜力,但 NMR 滴定表明仅形成 1:1 加合物。该体系对 C 和 C(分别为(2.71 ± 0.08)×10 和 (2.13 ± 0.1)×10 M)表现出非常强的亲和力,对后者具有选择性。密度泛函理论(DFT)计算表明,除了四个瓜环单元外,相对灵活的卟啉系链也积极参与识别过程,从而产生强烈的协同效应。这导致与 C 非常强的相互作用,这反过来又在另一侧(第二个潜在结合位点)引起大的结构变化,导致负变构效应。我们还尝试在卟啉核心中引入 Zn,以调节其灵活性。所得金属卟啉也表现出单镊子行为,尽管对 C 和 C 的结合常数略小,这表明富勒烯与我们超分子平台一侧的配位作用仍然传递到另一侧,导致第二个潜在结合位点失活。