Pathak Trilok K, Kroon R E, Craciun Valentin, Popa Marcela, Chifiriuc M C, Swart H C
Department of Physics, Teerthanker Mahaveer University, Moradabad, India.
Department of Physics, University of the Free State, Bloemfontein, South Africa.
Heliyon. 2019 Mar 14;5(3):e01333. doi: 10.1016/j.heliyon.2019.e01333. eCollection 2019 Mar.
Oxide materials (ZnO, TiO) doped with noble metals were synthesized using the combustion technique. The results of the addition of Ag, Au, and Pd up to a concentration of 2 mol% on the structural, optical, morphological and antimicrobial properties was considered. X-ray diffraction experiments revealed that the crystal structure of the host materials remained unaltered despite doping with noble metals. From the scanning electron microscopy results, it was evident that the doped nanoparticles aggregated in clusters of different sizes in the host matrix. The plasmonic effect was also observed in the absorbance spectra of the different doped materials. The obtained materials have shown promising antimicrobial features. All ZnO materials exhibited a high antimicrobial activity, with very low minimum inhibitory concentration values, against the planktonic growth of all tested Gram-positive and Gram-negative bacterial strains. All doped materials exhibited very good anti-biofilm activity, the lowest minimal biofilm eradication concentration values being registered for ZnO doped with Au and Pd toward and for ZnO doped with Ag against . These results indicate the potential that these materials have for antimicrobial applications in the fields of biomedicine and environmental protection.
采用燃烧技术合成了掺杂贵金属的氧化物材料(ZnO、TiO)。研究了添加浓度高达2 mol%的Ag、Au和Pd对结构、光学、形态和抗菌性能的影响。X射线衍射实验表明,尽管掺杂了贵金属,但主体材料的晶体结构未发生改变。从扫描电子显微镜结果可以明显看出,掺杂的纳米颗粒在主体基质中聚集成不同大小的簇。在不同掺杂材料的吸收光谱中也观察到了等离子体效应。所获得的材料显示出有前景的抗菌特性。所有ZnO材料对所有测试的革兰氏阳性和革兰氏阴性细菌菌株的浮游生长均表现出高抗菌活性,最低抑菌浓度值非常低。所有掺杂材料均表现出非常好的抗生物膜活性,对于掺杂Au和Pd的ZnO对以及掺杂Ag的ZnO对,最低生物膜根除浓度值最低。这些结果表明这些材料在生物医学和环境保护领域具有抗菌应用潜力。