Czech Technical University in Prague, Faculty of Biomedical Engineering, Sitna sq. 3105, 272 01 Kladno, Czech Republic; Institute of Physics of the Czech Academy of Sciences, Na Slovance 2, 182 21 Prague 8, Czech Republic.
Czech Technical University in Prague, Faculty of Biomedical Engineering, Sitna sq. 3105, 272 01 Kladno, Czech Republic; Institute of Physics of the Czech Academy of Sciences, Na Slovance 2, 182 21 Prague 8, Czech Republic.
Mater Sci Eng C Mater Biol Appl. 2017 Aug 1;77:955-962. doi: 10.1016/j.msec.2017.04.005. Epub 2017 Apr 6.
Silver doped diamond-like carbon layers were deposited by dual pulsed laser deposition using two KrF excimer lasers. The concentration of Ag, determined by XPS and WDS, moved from zero to ~10at%. We found that the sp/sp ratio, film roughness and the number of droplets (SEM and AFM) increased with increasing silver concentration. The sp content measurement (XPS) was influenced by ion cluster surface sputtering and varied from 71.0% (undoped DLC) to 36.2% (for 9.3at% Ag). Transmission was measured on the scale from 200nm to 1100nm, and decreased with increasing silver content. An increase of Ag content has an effect on the decrease of the storage modulus (E') and the indentation hardness (H). The highest values H=51.9GPa and E'=270.6GPa were measured on a sample with 0at% Ag. The lowest values H=26.0GPa and E'=180.2GPa were measured on a sample of 9.3at% Ag. Film adhesion was studied using the scratch test and was up to 20.8N for the highest Ag concentration. The contact angle (CA) measurements for water showed that the CA of Ag-DLC films was higher (78°-98°) that of DLC film (77°). The surface free energy of DLC and of Ag-DLC was about 40mJ·m. Antibacterial properties were studied using gram positive and gram negative bacteria. The antibacterial effects increased with the Ag concentration and were ~99.9% after 24h for the layers with the highest silver content (9.3at%). Our results demonstrate that the Ag-doped DLC films are potentially useful biomaterials having both good mechanical properties and antimicrobial characteristics.
Unique manufacturing technique dual pulsed laser deposition was applied on hydrogen-free diamond-like carbon doped by Ag including topological, physical and antibacterial characterization.
采用两台 KrF 准分子激光器的双脉冲激光沉积法制备了掺银类金刚石碳薄膜。通过 XPS 和 WDS 确定的 Ag 浓度从 0 增加到约 10at%。我们发现,sp/sp 比、薄膜粗糙度和液滴数量(SEM 和 AFM)随着 Ag 浓度的增加而增加。(XPS)的 sp 含量测量受到离子团簇表面溅射的影响,从 71.0%(未掺杂 DLC)变化到 36.2%(9.3at%Ag)。透射率在 200nm 至 1100nm 的范围内进行测量,随着 Ag 含量的增加而降低。Ag 含量的增加会导致存储模量(E')和压痕硬度(H)降低。在 Ag 含量为 0at%的样品上测量到最高值 H=51.9GPa 和 E'=270.6GPa。在 Ag 含量为 9.3at%的样品上测量到最低值 H=26.0GPa 和 E'=180.2GPa。使用划痕试验研究了薄膜附着力,最高 Ag 浓度下可达 20.8N。水的接触角(CA)测量表明,Ag-DLC 薄膜的 CA 高于 DLC 薄膜(77°)(78°-98°)。DLC 和 Ag-DLC 的表面自由能约为 40mJ·m。使用革兰氏阳性菌和革兰氏阴性菌研究了抗菌性能。随着 Ag 浓度的增加,抗菌效果增加,对于 Ag 浓度最高的层(9.3at%),24 小时后抗菌率达到约 99.9%。我们的结果表明,掺 Ag 的 DLC 薄膜具有良好的机械性能和抗菌特性,是一种潜在的有用的生物材料。
独特的制造技术双脉冲激光沉积法应用于不含氢的类金刚石碳中,掺杂 Ag 并包括拓扑、物理和抗菌特性的表征。