Ali Azam, Sattar Mariyam, Hussain Fiaz, Tareen Muhammad Humble Khalid, Militky Jiri, Noman Muhammad Tayyab
Department of Material and Textile Engineering, Technical University of Liberec, 46117 Liberec, Czech Republic.
Department of Mechanical Engineering, Institute of Space Technology, Islamabad 44000, Pakistan.
Nanomaterials (Basel). 2021 Apr 14;11(4):1007. doi: 10.3390/nano11041007.
The versatile one-pot green synthesis of a highly concentrated and stable colloidal dispersion of silver nanoparticles (Ag NPs) was carried out using the self-assembled tannic acid without using any other hazardous chemicals. Tannic acid (Plant-based polyphenol) was used as a reducing and stabilizing agent for silver nitrate in a mild alkaline condition. The synthesized Ag NPs were characterized for their concentration, capping, size distribution, and shape. The experimental results confirmed the successful synthesis of nearly spherical and highly concentrated (2281 ppm) Ag NPs, capped with poly-tannic acid (Ag NPs-PTA). The average particle size of Ag NPs-PTA was found to be 9.90 ± 1.60 nm. The colloidal dispersion of synthesized nanoparticles was observed to be stable for more than 15 months in the ambient environment (25 °C, 65% relative humidity). The synthesized AgNPs-PTA showed an effective antimicrobial activity against Staphylococcus Aureus (ZOI 3.0 mM) and Escherichia coli (ZOI 3.5 mM). Ag NPs-PTA also exhibited enhanced catalytic properties. It reduces 4-nitrophenol into 4-aminophenol in the presence of NaBH with a normalized rate constant (K = K/m) of 615.04 mL·s·mg. For comparison, bare Ag NPs show catalytic activity with a normalized rate constant of 139.78 mL·s·mg. Furthermore, AgNPs-PTA were stable for more than 15 months under ambient conditions. The ultra-high catalytic and good antimicrobial properties can be attributed to the fine size and good aqueous stability of Ag NPs-PTA. The unique core-shell structure and ease of synthesis render the synthesized nanoparticles superior to others, with potential for large-scale applications, especially in the field of catalysis and medical.
采用自组装的单宁酸,在不使用任何其他有害化学物质的情况下,实现了银纳米颗粒(Ag NPs)高浓度稳定胶体分散液的多功能一锅法绿色合成。单宁酸(植物源多酚)在温和碱性条件下用作硝酸银的还原剂和稳定剂。对合成的Ag NPs进行了浓度、封端、尺寸分布和形状表征。实验结果证实成功合成了近乎球形且高浓度(2281 ppm)的Ag NPs,其表面包覆有聚单宁酸(Ag NPs-PTA)。发现Ag NPs-PTA的平均粒径为9.90±1.60 nm。观察到合成纳米颗粒的胶体分散液在环境条件(25℃,65%相对湿度)下15个月以上保持稳定。合成的AgNPs-PTA对金黄色葡萄球菌(抑菌圈直径3.0 mM)和大肠杆菌(抑菌圈直径3.5 mM)表现出有效的抗菌活性。Ag NPs-PTA还表现出增强的催化性能。在硼氢化钠存在下,它将4-硝基苯酚还原为4-氨基苯酚,归一化速率常数(K = K/m)为615.04 mL·s·mg。相比之下,裸Ag NPs的催化活性归一化速率常数为139.78 mL·s·mg。此外,AgNPs-PTA在环境条件下15个月以上保持稳定。超高的催化性能和良好的抗菌性能可归因于Ag NPs-PTA的精细尺寸和良好的水稳定性。独特的核壳结构和易于合成使合成的纳米颗粒优于其他颗粒,具有大规模应用潜力,特别是在催化和医学领域。