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首页> 外文期刊>Journal of Colloid and Interface Science >Dendrimer-templated Pd nanoparticles and Pd nanoparticles synthesized by reverse microemulsions as efficient nanocatalysts for the Heck reaction: A comparative study
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Dendrimer-templated Pd nanoparticles and Pd nanoparticles synthesized by reverse microemulsions as efficient nanocatalysts for the Heck reaction: A comparative study

机译:树枝状聚合物为模板的Pd纳米颗粒和反向微乳液合成的Pd纳米颗粒作为Heck反应的有效纳米催化剂:一项比较研究

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摘要

Palladium nanoparticles (NPs) were prepared using a dendrimer-templated method using G4, G5 and G6 PAMAM-OH dendrimers as well as a reverse microemulsion method using the water/dioctyl sulfosuccinate sodium salt (aerosol-OT, AOT) surfactant/isooctane system with water to surfactant ratios (ω_0) of 5, 10 and 13. These 6 catalysts were characterized by UV-Vis spectroscopy, TEM, EDX, and XRD. TEM micrographs showed that the average sizes of 2.74-3.32 nm with narrower size distribution were achieved by using dendrimer-templated synthetic methods, whereas the reverse microemulsion method resulted in broad size distribution with an average size of 3.87-5.06 nm. The influence of various reaction parameters such as base, catalyst dosing, alkene, aryl halide and temperature on the Heck C-C coupling reaction was evaluated. The activation parameters were derived from the reaction rate of each catalyst obtained at various temperatures. A correlation of catalytic activity, enthalpy of activation and particle size is discussed. Particle size changes of each catalyst were investigated after the catalytic reaction. Overall results indicated that dendrimer-templated Pd NP catalysts showed superior activity as compared to the Pd NPs synthesized by reverse microemulsions, with the dendrimer-templated G5-OH(Pd_(80)) showing the best activity. These catalysts were also reusable for 3 cycles, retaining high yield and showing excellent yields under mild conditions. Therefore, the dendrimer-templated Pd NPs are efficient catalyst systems for the ligand-free Heck C-C coupling reaction.
机译:使用G4,G5和G6 PAMAM-OH树枝状聚合物以树枝状聚合物为模板的方法以及使用水/磺基琥珀酸二辛基钠盐(气溶胶-OT,AOT)表面活性剂/异辛烷体系的反向微乳液方法制备钯纳米颗粒(NPs)水与表面活性剂之比(ω_0)为5、10和13。这6种催化剂通过UV-Vis光谱,TEM,EDX和XRD表征。 TEM显微照片显示,使用树枝状聚合物为模板的合成方法可实现2.74-3.32 nm的平均粒径分布,且粒径分布较窄,而反向微乳液法可得到的粒径分布较宽,平均粒径为3.87-5.06 nm。评估了各种反应参数(例如碱,催化剂的加入量,烯烃,芳基卤化物和温度)对Heck C-C偶联反应的影响。活化参数得自在不同温度下获得的每种催化剂的反应速率。讨论了催化活性,活化焓和粒径的关系。催化反应后,研究每种催化剂的粒度变化。总体结果表明,与通过逆向微乳液合成的Pd NP相比,以树状聚合物为模板的Pd NP催化剂显示出更高的活性,其中以树状聚合物为模板的G5-OH(Pd_(80))表现出最佳的活性。这些催化剂还可以重复使用3个循环,保持高收率并在温和条件下显示出优异的收率。因此,以树状聚合物为模板的Pd NP是用于无配体的Heck C-C偶联反应的有效催化剂体系。

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