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Preparation of monometallic (Pd, Ag) and bimetallic (Pd/Ag, Pd/Ni, Pd/Cu) nanoparticles via reversed micelles and their use in the Heck reaction

机译:反向胶束制备单金属(Pd,Ag)和双金属(Pd / Ag,Pd / Ni,Pd / Cu)纳米颗粒及其在Heck反应中的应用

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摘要

The metal nanoparticles (NPs) have been prepared using a water-in-oil microemulsion system of water/dioctyl sulfosuccinate sodium salt (aerosol-OT, AOT)/isooctane at 25 °C. Since the NPs produced in this system can endure forcing conditions (100 °C), this system has been used for the synthesis of nano-catalysts in the Heck reactions. FE-SEM, DLS, and UV/vis analyses have been used to characterize the surface morphology, size, and proof of the formation of all the prepared metal NPs, respectively. In addition, the effects of some reaction parameters (here, bases and solvents) were optimized. Differences in the catalytic properties of the synthesized NPs have also been investigated. Consequently, the Pd/Cu (4:1) bimetallic NP showed the highest activity in the C-C coupling reaction of the iodobenzene with the styrene, thus it is employed as the superior catalyst in this study. Therefore, the Pd/Cu (4:1) bimetallic NPs were further investigated using TEM and XRD analyses. This catalyst system is also reusable for six runs with very negligible reduction in the efficiency.
机译:使用水/磺基琥珀酸二辛酯钠盐(气溶胶-OT,AOT)/异辛烷的油包水微乳液系统在25°C下制备金属纳米颗粒(NPs)。由于在此系统中产生的NP可以承受强迫条件(100°C),因此该系统已用于Heck反应中的纳米催化剂的合成。 FE-SEM,DLS和UV / vis分析已分别用于表征所有制备的金属NP的表面形态,大小和形成证据。此外,还优化了某些反应参数(此处为碱和溶剂)的影响。还研究了合成NP的催化性质的差异。因此,Pd / Cu(4:1)双金属NP在碘苯与苯乙烯的C-C偶联反应中显示出最高的活性,因此在本研究中被用作优良的催化剂。因此,使用TEM和XRD分析进一步研究了Pd / Cu(4:1)双金属NP。该催化剂体系还可以重复使用六次,而效率的降低可忽略不计。

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