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Synthesis of antimicrobial AlOOH–Ag composite nanostructures by water oxidation of bimetallic Al–Ag nanoparticles

机译:双金属Al-Ag纳米粒子的水氧化法合成抗菌AlOOH-Ag复合纳米结构

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The facile one-step synthesis of AlOOH–Ag nanocomposite has been performed. Bimetallic Al–Ag nanoparticles prepared by electrical explosion of Al and Ag wires were used as a precursor. AlAg nanoparticles consisted of a supersaturated Al–6 at% Ag solid solution and Ag-rich Guinier–Preston zone several nanometer in diameter that were not detected by XRD due to their extremely small size and peculiarities of their crystal structure. An environmentally friendly process of water oxidation at 60 C was used to convert Al–Ag nanoparticles into AlOOH–Ag nanocomposites. In the course of oxidation, chemical dealloying of Al–Ag solid solution took place yielding porous agglomerates with inclusions of very fine 5–30 nm Ag nanoparticles. The agglomerates consisted of 2–5 nm thick crumpled nanosheets of boehmite 200 nm in size. The synthesized AlOOH–Ag nanocomposites possessed high antibacterial activity against both Gram-negative and Gram-positive microorganisms as indicated by the time-kill assay. The presented results open up new processing possibilities of metal-oxide composite nanostructures with attractive properties that can be used in catalysis, water purification and biomedical applications.
机译:已经完成了AlOOH-Ag纳米复合材料的简便一步合成。通过铝和银丝的电爆炸制备的双金属Al-Ag纳米颗粒被用作前体。 AlAg纳米颗粒由过饱和的Al-6 at%Ag固溶体和富含Ag的Guinier-Preston区组成,直径几纳米,由于其非常小的尺寸和晶体结构的特殊性,XRD未能检测到。 60°C的水氧化环保工艺可用于将Al-Ag纳米颗粒转化为AlOOH-Ag纳米复合材料。在氧化过程中,发生了Al-Ag固溶体的化学脱合金化处理,生成了多孔附聚物,其中包含非常细的5-30 nm Ag纳米颗粒。团聚体由尺寸为200 nm的勃姆石2–5 nm的皱皱纳米片组成。如时间杀灭试验所示,合成的AlOOH-Ag纳米复合材料对革兰氏阴性和革兰氏阳性微生物均具有很高的抗菌活性。提出的结果为具有诱人性能的金属氧化物复合纳米结构开辟了新的加工可能性,可用于催化,水净化和生物医学应用。

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