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钯纳米粒子限域孔工程的聚氨酯连接硫醇功能化共价有机框架:用于铃木宫浦交叉偶联反应的高性能催化剂。

Palladium nanoparticles-confined pore-engineered urethane-linked thiol-functionalized covalent organic frameworks: a high-performance catalyst for the Suzuki Miyaura cross-coupling reaction.

机构信息

Department of Chemistry, Faculty of Science, The Maharaja Sayajirao University of Baroda, Vadodara, 390002, India.

出版信息

Dalton Trans. 2023 Feb 21;52(8):2518-2532. doi: 10.1039/d2dt04057c.

Abstract

Covalent organic frameworks (COFs) are potential templates for the synthesis of nanomaterials owing to the versatility of their structure. Most of the reported COFs comprise imine linkages. Herein, we report for the first time the synthesis of a urethane-linked COF (UCOF) using monoformylphloroglucinol and 1,4-phenylene diisocyanate as monomers. Furthermore, the UCOF was functionalized with cysteamine to introduce free dangling thiol groups into the cavity. The latter played a critical role in fixing the active metal efficiently and facilitating the confined growth of small metal nanoparticles (∼4-6 nm) with a high surface area leading to a pore-engineered heterogeneous Pd catalyst (PdNPs@UCOF-SH). The COF and Pd catalyst were characterized using various analytical techniques such as CP-MAS NMR, FTIR, PXRD, BET, FEG-SEM, HRTEM, XPS, TGA, and ICP-AES. The as-prepared UCOF-SH-supported Pd nanoparticles showed excellent catalytic activity in the Suzuki Miyaura cross-coupling reaction under mild conditions with low catalyst loading and eco-friendly solvents. The scope was extended to various aryl boronic acids and aryl halides (I, Br, and Cl). The halo-substituted and non-halo biaryl derivatives were obtained in good to excellent yields, within a shorter reaction time, avoiding the homocoupling of aryl boronic acid. The pore-engineered COF-derived catalyst is selective and easily recycled up to 10 runs without significant loss of catalytic activity. This reveals the robust nature of the PdNPs@UCOF-SH catalyst and the sustainability of the process which opens a new frontier for several catalytic applications.

摘要

共价有机骨架(COFs)因其结构的多功能性而成为合成纳米材料的潜在模板。大多数报道的 COFs 都包含亚胺键。在此,我们首次报道了使用单甲酰基苯并三酚和 1,4-苯二异氰酸酯作为单体合成了一种氨酯键连接的 COF(UCOF)。此外,将 UCOF 用半胱胺官能化,将游离悬空硫醇基团引入到空腔中。后者在有效固定活性金属和促进小金属纳米颗粒(约 4-6nm)的受限生长方面发挥了关键作用,从而得到了具有高表面积的孔工程化的异相 Pd 催化剂(PdNPs@UCOF-SH)。使用各种分析技术如 CP-MAS NMR、FTIR、PXRD、BET、FEG-SEM、HRTEM、XPS、TGA 和 ICP-AES 对 COF 和 Pd 催化剂进行了表征。在温和条件下,用低催化剂负载量和环境友好的溶剂,制备的 UCOF-SH 负载的 Pd 纳米粒子在 Suzuki-Miyaura 交叉偶联反应中表现出优异的催化活性。该方法的适用范围扩展到了各种芳基硼酸和芳基卤化物(I、Br 和 Cl)。在较短的反应时间内,以良好到优异的收率获得了卤代和非卤代联芳基衍生物,避免了芳基硼酸的自身偶联。孔工程化的 COF 衍生催化剂具有选择性,可在 10 次循环中回收,且催化活性没有明显损失。这揭示了 PdNPs@UCOF-SH 催化剂的坚固性质和过程的可持续性,为许多催化应用开辟了新的前沿。

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