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Green synthesis of noble metal and bimetal nanosols and their applications as catalysts

机译:贵金属和双金属纳米溶胶的绿色合成及其在催化剂中的应用

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Bimetallic nanoparticles with various noble metals (AuCu, AuAg, PdCu, PdAu) as well as the respective monometallic nanoparticles protected by PVP shell were synthesized following the developed strategy. A deep characterization was performed on prepared sols using HR-TEM, XEDS, UV-vis, ICP-OES and XRD. Microwave heating has been shown to provide more homogeneous particle nucleation and shorter synthesis time than traditional heating. This synthesis route showed several advantages with respect to other methods, in fact it is simple, eco-friendly, carried out at low temperature and easy transferable on large scale production. Particle size-control, total reaction yield, high solid loading and long time stability of colloids, were achieved thanks to an accurate reaction optimization. Prepared nanoparticles acted as effective catalysts in the reduction of 4-nitrophenol with NaBH_4, a typical probe reaction.
机译:遵循开发的策略,合成了具有各种贵金属(AuCu,AuAg,PdCu,PdAu)的双金属纳米粒子,以及受PVP壳保护的各个单金属纳米粒子。使用HR-TEM,XEDS,UV-vis,ICP-OES和XRD对制得的溶胶进行了深入表征。与传统加热相比,微波加热已显示出更均匀的颗粒成核作用和更短的合成时间。该合成路线相对于其他方法显示出若干优点,实际上,它是简单,生态友好的,在低温下进行的并且易于大规模生产转移。得益于精确的反应优化,实现了粒径控制,总反应收率,高固含量和胶体的长期稳定性。制备的纳米颗粒在用典型的探针反应NaBH_4还原4-硝基苯酚中起着有效的催化剂的作用。

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