Facultad de Ingeniería Química, Benemérita Universidad Autónoma de Puebla, Avenida San Claudio y 18 Sur, Puebla 72570, Mexico.
Advanced Materials Department, Instituto Potosino de Investigación Científica y Tecnológica A.C., Camino a la Presa de San José 2055, Lomas 4 Sección, San Luis Potosi 78216, Mexico.
Molecules. 2021 Dec 26;27(1):127. doi: 10.3390/molecules27010127.
Silver and gold nanoparticles were synthesized under environmentally-friendly reaction conditions by using a biodegradable copolymer and water as a solvent. The triblock copolymer Pluronic P103 was utilized as a stabilizing agent or soft template to produce Ag and Au nanoparticles (NPs) of different sizes. Moreover, in the synthesis of Au NPs, the polymer acted as a reducing agent, decreasing the number of reagents used and consequently the residues produced, hence, rendering the procedure less complicated. It was observed that as the concentration of the polymer increased, the size of the metallic NPs augmented as well. However, AgNPs and AuNPs prepared with 1 and 10 wt% Pluronic P103, respectively, showed a significant decrease in particle size due to the presence of polymeric soft templates. The hybrid materials (metal/polymer) were characterized by UV-Vis spectroscopy, DLS, and TEM. The pre-synthesized nanoparticles were employed to decorate anatase-TiO, and the composites were characterized by DRS, XRD, BET surface area measurements, the TEM technique with the EDS spectrum, and XPS spectroscopy to demonstrate NPs superficial incorporation. Finally, methylene blue was used as a probe molecule to evidence the effect of NPs decoration in its photocatalytic degradation. The results showed that the presence of the NPs positively affected methylene blue degradation, achieving 96% and 97% removal by utilizing TAg0.1 and TAu10, respectively, in comparison to bare anatase-TiO (77%).
在环保的反应条件下,利用可生物降解的共聚物和水作为溶剂,合成了银和金纳米粒子。三嵌段共聚物 Pluronic P103 被用作稳定剂或软模板,以产生不同尺寸的 Ag 和 Au 纳米粒子(NPs)。此外,在 Au NPs 的合成中,聚合物充当还原剂,减少了所用试剂的数量,从而减少了产生的残留物,因此使过程变得不那么复杂。可以观察到,随着聚合物浓度的增加,金属 NPs 的尺寸也增大。然而,由于存在聚合物软模板,分别用 1wt%和 10wt% Pluronic P103 制备的 AgNPs 和 AuNPs 的粒径明显减小。通过 UV-Vis 光谱、DLS 和 TEM 对混合材料(金属/聚合物)进行了表征。预合成的纳米粒子被用来修饰锐钛矿 TiO,通过 DRS、XRD、BET 比表面积测量、TEM 技术和 EDS 光谱以及 XPS 光谱来证明 NPs 的表面结合,以证明 NPs 的表面结合。最后,使用亚甲基蓝作为探针分子来证明 NPs 修饰对其光催化降解的影响。结果表明,纳米粒子的存在对亚甲基蓝的降解有积极的影响,与纯锐钛矿 TiO(77%)相比,分别使用 TAg0.1 和 TAu10 可以达到 96%和 97%的去除率。