Yepremyan Akop, Mekhail Magy A, Niebuhr Brian P, Pota Kristof, Sadagopan Nishanth, Schwartz Timothy M, Green Kayla N
Department of Chemistry and Biochemistry, Texas Christian University, 2950 W. Bowie, Fort Worth, Texas 76129, United States.
J Org Chem. 2020 Apr 3;85(7):4988-4998. doi: 10.1021/acs.joc.0c00188. Epub 2020 Mar 25.
The number of substituted pyridine pyridinophanes found in the literature is limited due to challenges associated with 12-membered macrocycle and modified pyridine synthesis. Most notably, the electrophilic character at the 4-position of pyridine in pyridinophanes presents a unique challenge for introducing electrophilic chemical groups. Likewise, of the few reported, most substituted pyridine pyridinophanes in the literature are limited to electron-donating functionalities. Herein, new synthetic strategies for four new macrocycles bearing the electron-withdrawing groups CN, Cl, NO, and CF are introduced. Potentiometric titrations were used to determine the protonation constants of the new pyridinophanes. Further, the influence of such modifications on the chemical behavior is predicted by comparing the potentiometric results to previously reported systems. X-ray diffraction analysis of the 4-Cl substituted species and its Cu(II) complex are also described to demonstrate the metal binding nature of these ligands. DFT analysis is used to support the experimental findings through energy calculations and ESP maps. These new molecules serve as a foundation to access a range of new pyridinophane small molecules and applications in future work.
由于与12元大环和修饰吡啶合成相关的挑战,文献中发现的取代吡啶并环番的数量有限。最值得注意的是,并环番中吡啶4位的亲电特性给引入亲电化学基团带来了独特的挑战。同样,在文献中报道的少数取代吡啶并环番中,大多数仅限于供电子官能团。在此,介绍了四种带有吸电子基团CN、Cl、NO和CF的新型大环化合物的新合成策略。采用电位滴定法测定新型并环番的质子化常数。此外,通过将电位滴定结果与先前报道的体系进行比较,预测了这些修饰对化学行为的影响。还描述了4-Cl取代物种及其Cu(II)配合物的X射线衍射分析,以证明这些配体的金属配位性质。密度泛函理论(DFT)分析通过能量计算和静电势(ESP)图来支持实验结果。这些新分子为今后获得一系列新型并环番小分子及其应用奠定了基础。