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首页> 外文期刊>Reaction Chemistry & Engineering >Catalytic activity of Pd/hydrophilic phosphine ligand in the interface of an aqueous-phase Cu- free Sonogashira coupling
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Catalytic activity of Pd/hydrophilic phosphine ligand in the interface of an aqueous-phase Cu- free Sonogashira coupling

机译:Pd /亲水膦配体在水相Cu的Sonogashira耦合界面中Pd /亲水膦配体的催化活性

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A Cu-free Sonogashira coupling was carried out in a microfluidic reactor with a static organic–aqueous interface and analyzed Raman spectroscopy. This was the first time that Raman spectroscopy was used in this way to analyze an active cross-coupling. This yielded a better understanding of the reac- tive interface-mainly that the Pd catalyst is only active in the mixture domain, either the cationic or the an- ionic deprotonation mechanism describes the reaction, and dissociation of the vinyl–PdII complex is poten- tially the rate determining step. The ratio of Pd to hydrophilic ligand is also non-stoichiometric as inactive stable Pd nanoparticles form. This validated previous kinetic models and the assumption that cross- couplings using a hydrophilic ligand can be described by thin film theory. Our findings support that the re- action should be performed with the minimal possible film thickness, which has implications on the design of the reactor. Characterization of the Pd and ligand within the interface is important for deriving accurate kinetic models that maximize catalyst recovery and selectivity while minimizing the environmental impacts of useful compounds when performing green chemistry.
机译:在具有静态有机 - 水界面和分析拉曼光谱的微流体反应器中进行无CU的SONogashira偶联。这是利用这种方式使用拉曼光谱来分析主动交叉耦合。这产生了更好地理解界面 - 主要是Pd催化剂仅在混合结构域中活性,阳离子或α-离子去质子化机制描述了反应,并且乙烯基-PDII复合物的解离是产量的速率确定步骤。 Pd与亲水性配体的比例也是非化学计量的作为无活性稳定的Pd纳米颗粒形式。这种验证了以前的动力学模型以及使用亲水配体的交叉偶联的假设可以通过薄膜理论描述。我们的研究结果支持,应使用最小可能的薄膜厚度进行再动,这对反应器的设计有影响。界面内Pd和配体的表征对于导出最大化催化剂回收和选择性的准确动力学模型是重要的,同时在进行绿色化学时最小化有用化合物的环境影响。

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