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使用环保方法合成单(Ag、Fe)和双(Ag-Fe)金属纳米粒子嵌入的生物聚合物共混物纳米复合材料,用于抗菌活性。

Synthesis of biopolymer blends nanocomposites embedded with mono-(Ag, Fe) and bi-(Ag-Fe) metallic nanoparticles using an eco-friendly approach for antimicrobial activities.

机构信息

Polymer Nanocomposites and Functional Materials Laboratory, Department of Physics, University College of Science, Osmania University, Hyderabad, 500 007, Telangana, India.

Department of Physics, Government Degree College for Women, Khammam, 507 001, Telangana, India.

出版信息

Bioprocess Biosyst Eng. 2024 Aug;47(8):1293-1306. doi: 10.1007/s00449-024-03011-6. Epub 2024 Apr 3.

Abstract

Plant-mediated solution casting is used to develop eco-friendly polymer blend nanocomposites from polyvinyl alcohol (PVA) and polyvinylpyrrolidone (PVP) doped with Silver (Ag), Ferrous (Fe) monometallic and Silver-Ferrous (Ag-Fe) bimetallic nanoparticles (NPs). These nanocomposites were studied to understand their electromagnetic interface (EMI) shielding efficiency and antimicrobial activities, besides evaluating their physical and chemical properties. The Fourier transform infrared (FTIR), X-ray diffraction (XRD), field emission scanning electron microscopy (FESEM), and energy dispersive X-ray (EDX) characterization techniques were used to examine the interactions between the polymers, the presence of silver and ferrous particles in the composites, the crystallinity shift, the surface morphology, the shape and size of the nanoparticles and the distribution of the nanoparticles in the composites. The FTIR spectra showed the interactions among the components of the composites. According to XRD spectra, the incorporation of nanoparticles into the PVA polymer significantly reduced the crystalline character of the polymer from 0.38 to 0.24 for the composition consisting of silver and iron nanoparticles in equal proportion. The results from SEM, EDX and XRD corroborate the presence of nanoparticle forms. The thermogravimetric analysis (TGA) tests reveal that the thermal stability of bimetallic composites is greater than that of monometallic composites. The tensile properties showed that the addition of nanoparticles to the PVA/PVP polymer matrix increased its mechanical strength from 59.3 MPa to 85.5 MPa. We examined its efficacy against Escherichia coli, Staphylococcus aureus and Candida albicans as microorganisms. Good antibacterial and antifungal activity was observed. The bimetallic composites demonstrated greater activity than monometallic composites against these bacterial and fungal species. All bimetallic nanocomposites have shown enhanced, loss due to reflection, loss due to absorption, and the total EMI shielding efficiency at 8 GHz (X-band) and 16 GHz (Ku-band) frequency. All these results ratify, that these newly developed bio nanocomposites are most suitable in many applications, in EMI shielding, nanotechnology, and medical fields.

摘要

采用植物介导的溶液浇铸法,从聚乙烯醇(PVA)和聚乙烯吡咯烷酮(PVP)中制备了掺杂银(Ag)、二价铁(Fe)单金属和银-铁(Ag-Fe)双金属纳米粒子(NPs)的环保聚合物共混纳米复合材料。研究了这些纳米复合材料,以了解它们的电磁干扰(EMI)屏蔽效率和抗菌活性,同时评估它们的物理和化学性质。傅里叶变换红外(FTIR)、X 射线衍射(XRD)、场发射扫描电子显微镜(FESEM)和能量色散 X 射线(EDX)表征技术用于研究聚合物之间的相互作用、复合材料中银和二价铁颗粒的存在、结晶度变化、表面形态、纳米颗粒的形状和尺寸以及纳米颗粒在复合材料中的分布。FTIR 光谱显示了复合材料各组分之间的相互作用。根据 XRD 谱,纳米颗粒的掺入使聚合物的结晶度从具有等比例银和铁纳米颗粒的组成的 0.38 显著降低至 0.24。SEM、EDX 和 XRD 的结果证实了纳米颗粒形态的存在。热重分析(TGA)测试表明,双金属复合材料的热稳定性大于单金属复合材料。拉伸性能表明,将纳米颗粒添加到 PVA/PVP 聚合物基体中,使其机械强度从 59.3 MPa 增加到 85.5 MPa。我们研究了其对大肠杆菌、金黄色葡萄球菌和白色念珠菌等微生物的功效。观察到良好的抗菌和抗真菌活性。双金属复合材料对这些细菌和真菌的活性大于单金属复合材料。所有双金属纳米复合材料在 8 GHz(X 波段)和 16 GHz(Ku 波段)频率下都表现出增强的、由于反射引起的损耗、由于吸收引起的损耗以及总 EMI 屏蔽效率。所有这些结果都证实了这些新开发的生物纳米复合材料在 EMI 屏蔽、纳米技术和医疗领域的许多应用中是最合适的。

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