期刊论文详细信息
Micro & nano letters
Antibacterial properties of silver coated regenerated cellulose
article
Petr Slepička1  Nikola Slepičková Kasálková1  Marketa Pišlová1  Kamil Kotrba1  Václav Švorčík1 
[1] Department of Solid State Engineering, The University of Chemistry and Technology
关键词: microorganisms;    antibacterial activity;    atomic force microscopy;    X-ray photoelectron spectra;    sputter deposition;    surface morphology;    surface roughness;    surface treatment;    surface chemistry;    nanofabrication;    plasma materials processing;    wetting;    silver;    ageing;    sputtered coatings;    nanostructured materials;    metallic thin films;    polymers;    nanomedicine;    antibacterial properties;    silver coated regenerated cellulose;    surface properties;    plasma modification;    physical properties;    chemical properties;    surface chemistry;    surface morphology;    plasma exposure time;    sputtering time;    surface roughness;    atomic force microscopy;    chemical changes;    X-ray spectroscopy;    silver nanolayers;    activated substrate;    aging period;    surface-treatment;    gravimetric analysis;    plasma treatment time;    XPS;    modified cellulose;    antibacterial tests;    silver layer;    plasma activated regenerated cellulose;    linear mass loss;    oxygen content;    Staphylococcus epidermidis;    Escherichia coli;    wettability;    Ag;   
DOI  :  10.1049/mnl.2019.0492
学科分类:计算机科学(综合)
来源: Wiley
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【 摘 要 】

This work is focused on the study and characterisation of surface properties of regenerated cellulose after plasma modification, which significantly affects its physical and chemical properties such as wettability, surface chemistry, and surface morphology. Depending on the selected parameters, such as the plasma exposure time of the substrate, its aging and the sputtering time with silver, the modified material was studied in different analytical methods. The ablation of the substrate was determined gravimetrically. Changes in surface roughness were detected by atomic force microscopy and chemical changes were studied with X-ray spectroscopy (XPS). Silver nanolayers were sputtered on the activated substrate and the antibacterial properties of these layers were studied. It has been determined the aging period for surface-treated under different exposure time, gravimetric analysis has shown almost linear mass loss with plasma treatment time, the surface roughness slightly decreases with the action of plasma. XPS analysis revealed that the oxygen content increased due to the higher reactivity of the surface of the modified cellulose. Antibacterial tests have shown that the silver layer sputtered on plasma activated regenerated cellulose significantly reduces the colonies of both Escherichia coli and Staphylococcus epidermidis.

【 授权许可】

CC BY|CC BY-ND|CC BY-NC|CC BY-NC-ND   

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