Ribeiro Caroline A S, Panico Karine, Handajevsky Tamara J, da Silva Fernanda Dias, Bellettini Ismael C, Pavlova Ewa, Giacomelli Fernando C
Centro de Ciências Naturais e Humanas, Universidade Federal do ABC, Santo André 09280-560, Brazil.
Departamento de Ciências Exatas e Educação, Universidade Federal de Santa Catarina, Blumenau 89036-004, Brazil.
Langmuir. 2023 Dec 5;39(48):17353-17365. doi: 10.1021/acs.langmuir.3c02538. Epub 2023 Nov 22.
The large surface area of metallic nanoparticles provides them with particular optical, chemical, and biological properties, accordingly enabling their use in a wide array of applications. In this regard, facile and fast synthetic approaches are desirable for ready-to-use functional materials. Following early investigations focused on the direct synthesis of polymer-coated gold nanoparticles, we herein demonstrate that such a strategy can be used to manufacture different types of d-block transition-metal nanoparticles via a one-pot method in aqueous media and mild temperature conditions. Gold (Au), palladium (Pd), and silver (Ag) ions could be reduced using only polyethylenimine (PEI) or PEI derivatives acting simultaneously as a reducing and stabilizing agent and without the aid of any other external agent. The process gave rise, for instance, to Pd urchin-like nanostructures with a large surface area which confers to them outstanding catalytic performance compared to AuNPs and AgNPs produced using the same strategy. The polymer-stabilized AgNPs were demonstrated to be biocide against a variety of microorganisms, although AuNPs and PdNPs do not hold such an attribute at least in the probed concentration range. These findings may provide significant advances toward the practical, facile, and ready-to-use manufacturing of transition-metal nanoparticles for a myriad of applications.
金属纳米粒子的大表面积赋予它们特殊的光学、化学和生物学特性,从而使其能够用于广泛的应用。在这方面,简便快速的合成方法对于即用型功能材料来说是很有必要的。在早期专注于聚合物包覆金纳米粒子直接合成的研究之后,我们在此证明,这种策略可用于在水性介质和温和温度条件下通过一锅法制造不同类型的d族过渡金属纳米粒子。仅使用聚乙烯亚胺(PEI)或同时作为还原剂和稳定剂的PEI衍生物,无需任何其他外部试剂的帮助,就可以还原金(Au)、钯(Pd)和银(Ag)离子。例如,该过程产生了具有大表面积的Pd海胆状纳米结构,与使用相同策略制备的AuNP和AgNP相比,赋予了它们出色的催化性能。聚合物稳定的AgNP被证明对多种微生物具有杀菌作用,尽管AuNP和PdNP至少在探测的浓度范围内不具有这种特性。这些发现可能为过渡金属纳米粒子的实际、简便和即用型制造以用于众多应用提供重大进展。