Department of Chemical Sciences, Indian Institute of Science Education and Research Kolkata, Mohanpur 741246, India.
Centre for Advanced Functional Materials, Indian Institute of Science Education and Research Kolkata, Mohanpur 741246, India.
J Am Chem Soc. 2022 May 4;144(17):7822-7833. doi: 10.1021/jacs.2c01814. Epub 2022 Apr 21.
Covalent organic frameworks (COFs) are promising hosts in heterogeneous catalysis. Herein, we report a dual metalation strategy in a single two-dimensional-COF TpBpy for performing a variety of C-N cross-coupling reactions. [Ir(ppy)(CHCN)]PF [ppy = 2-phenylpyridine], containing two labile CHCN groups, and NiCl are used as iridium and nickel-metal precursors, respectively, for postsynthetic decoration of the TpBpy COF. Moving from the traditional approach, we focus on the COF-backbone host for visible-light-mediated nickel-catalyzed C-N coupling reactions. The controlled metalation and recyclability without deactivation of both catalytic centers are unique with respect to previously reported coupling strategies. We performed various photoluminescence, electrochemical, kinetic, and Hammett correlation studies to understand the salient features of the catalyst and reaction mechanism. Furthermore, theoretical calculations delineated the feasibility of electron transfer from the Ir center to the Ni center inside the confined pore of the TpBpy COF. The dual metal anchoring within the COF backbone prevented nickel-black formation. The developed protocol enables selective and reproducible coupling of a diverse range of amines (aryl, heteroaryl, and alkyl), carbamides, and sulfonamides with electron-rich, neutral, and poor (hetero) aryl iodides up to 94% isolated yield. The reaction can also be performed on a gram scale. Furthermore, to establish the practical implementation of this approach, we have applied the synthetic strategy for the late-stage diversification of the derivatives of ibuprofen, naproxen, gemfibrozil, helional, and amino acids. The methodology could also be applied to synthesize pharmacophore N,5-diphenyloxazol-2-amine and Food and Drug Administration-approved drugs, including flufenamic acid, flibanserin, and tripelennamine.
共价有机骨架(COFs)是异相催化中很有前途的主体。在此,我们报告了一种在二维 COF TpBpy 中进行各种 C-N 交叉偶联反应的双重金属化策略。[Ir(ppy)(CHCN)]PF[ppy = 2-苯基吡啶],含有两个不稳定的 CHCN 基团,以及 NiCl 分别用作铱和镍金属前体,用于 TpBpy COF 的后合成修饰。与传统方法不同,我们专注于 COF 骨架主体,用于可见光介导的镍催化 C-N 偶联反应。两个催化中心的可控金属化和可回收性而不失活是以前报道的偶联策略所没有的独特之处。我们进行了各种光致发光、电化学、动力学和哈米特相关性研究,以了解催化剂和反应机制的显著特征。此外,理论计算描绘了电子从 Ir 中心转移到 Ni 中心的可能性,这是在 TpBpy COF 的受限孔内进行的。双金属在 COF 骨架内的锚定防止了镍黑的形成。所开发的方案能够选择性和可重复地将各种胺(芳基、杂芳基和烷基)、氨基甲酸酯和磺胺与富电子、中性和贫(杂)芳基碘进行偶联,产率高达 94%。该反应也可以在克级规模上进行。此外,为了建立这种方法的实际应用,我们已经将合成策略应用于布洛芬、萘普生、吉非贝齐、海洛因和氨基酸衍生物的后期多样化。该方法还可用于合成药效团 N,5-二苯恶唑-2-胺和美国食品和药物管理局批准的药物,包括氟芬那酸、氟班色林和曲匹那敏。