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负载于多壁碳纳米管上的双金属镍-钯纳米颗粒用于连续流动中的铃木交叉偶联反应

Bimetallic Nickel-Palladium Nanoparticles Supported on Multiwalled Carbon Nanotubes for Suzuki Cross-Coupling Reactions in Continuous Flow.

作者信息

Wilson Katherine A, Winkleman Harlee B, Siamaki Ali R

机构信息

Department of Chemistry, Physics, and Materials Science, Fayetteville State University, Fayetteville, North Carolina 28301, United States.

出版信息

Ind Eng Chem Res. 2025 Jan 7;64(3):1427-1438. doi: 10.1021/acs.iecr.4c02922. eCollection 2025 Jan 22.

Abstract

An efficient Suzuki cross-coupling reaction under continuous flow conditions was developed utilizing an immobilized solid supported catalyst consisting of bimetallic nickel-palladium nanoparticles (Ni-Pd/MWCNTs). In this process, the reactants can be continuously pumped into a catalyst bed at a high flow rate of 0.6 mL/min and the temperature of 130 °C while the Suzuki products are recovered in high steady-state yields for prolonged continuous processing. The catalyst was prepared by mechanical shaking of the appropriate nickel and palladium salts using ball-mill energy without the requirement of any solvent or reducing agent. This straightforward, facile, and simple method allows for bulk production of Ni-Pd/MWCNTs nanoparticles with a small particle size ideal for application in continuous flow cross-coupling catalysis. The as-prepared catalyst mostly contains nickel (7.9%) with a very small amount of palladium (0.81%) according to ICP-OES analysis. This remarkable immobilized catalyst can be used several times for different Suzuki reactions with a minimum loss of reactivity and no detectable leaching of the metal nanoparticles. Notably, by modifying the groups on both aryl halides and phenylboronic acids, the method provides access to a diverse array of the Suzuki products in flow with high steady-state yield, making it suitable for applications in industrial and pharmaceutical scales. Moreover, several spectroscopic techniques were employed to identify the structure and composition of the as-prepared Ni-Pd/MWCNTs nanoparticles before and after the reaction in flow such as transmission electron microscopy (TEM), X-ray diffraction (XRD), X-ray photoelectron spectroscopy (XPS), thermogravimetric analysis (TGA), BET surface area (physisorption), and FTIR spectroscopy.

摘要

利用由双金属镍 - 钯纳米颗粒(Ni - Pd/MWCNTs)组成的固定化固体负载催化剂,开发了一种在连续流动条件下高效的铃木交叉偶联反应。在此过程中,反应物可以以0.6 mL/min的高流速连续泵入催化剂床层,反应温度为130°C,同时铃木反应产物以高稳态产率回收,可进行长时间的连续处理。该催化剂是通过使用球磨能量机械振荡适当的镍盐和钯盐制备的,无需任何溶剂或还原剂。这种直接、简便的方法允许批量生产具有小粒径的Ni - Pd/MWCNTs纳米颗粒,非常适合用于连续流动交叉偶联催化。根据电感耦合等离子体发射光谱(ICP - OES)分析,所制备的催化剂主要含有镍(7.9%)和极少量的钯(0.81%)。这种出色的固定化催化剂可用于多次不同的铃木反应,反应活性损失最小,且未检测到金属纳米颗粒的浸出。值得注意的是,通过修饰芳基卤化物和苯硼酸上的基团,该方法能够以高稳态产率在流动状态下获得多种铃木反应产物,适用于工业和制药规模的应用。此外,还采用了几种光谱技术来鉴定在流动反应前后所制备的Ni - Pd/MWCNTs纳米颗粒的结构和组成,如透射电子显微镜(TEM)、X射线衍射(XRD)、X射线光电子能谱(XPS)、热重分析(TGA)、BET表面积(物理吸附)和傅里叶变换红外光谱(FTIR)。

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