Electrochemical and antimicrobial properties of diamondlike carbon-metal composite films

被引:119
作者
Morrison, ML
Buchanan, RA
Liaw, PK
Berry, CJ
Brigmon, RL
Riester, L
Abernathy, H
Jin, C
Narayan, RJ
机构
[1] Univ Tennessee, Dept Mat Sci & Engn, Knoxville, TN 37996 USA
[2] Savannah River Natl Lab, Environm Biotechnol Sect, Aiken, SC 29808 USA
[3] Oak Ridge Natl Lab, Met & Ceram Div, Oak Ridge, TN 37831 USA
[4] Georgia Inst Technol, Sch Mat Sci & Engn, Atlanta, GA 30332 USA
[5] Georgia Inst Technol, Interdisciplinary Bioengn Program, Atlanta, GA 30332 USA
基金
美国国家科学基金会;
关键词
diamondlike carbon; pulsed laser deposition; corrosion;
D O I
10.1016/j.diamond.2005.08.031
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Implants containing antimicrobial metals may reduce morbidity, mortality, and healthcare costs associated with medical device-related infections. We have deposited diamondlike carbon-silver (DLC-Ag), diamondlike carbon-platinum (DLC-Pt), and diamondlike carbonsilver-platinum (DLC-AgPt) thin films using a multicomponent target pulsed laser deposition process. Transmission electron microscopy of the DLC-silver and DLC-platinum composite films revealed that the silver and platinum self-assemble into nanoparticle affays within the diamondlike carbon matrix. The diamondlike carbon-silver film possessed hardness and Young's modulus values of 37 GPa and 331 GPa, respectively. The diamondlike carbon-metal composite films exhibited passive behavior at open-circuit potentials. Low corrosion rates were observed during testing in a phosphate-buffered saline (PBS) electrolyte. In addition, the diamondlike carbon-metal composite films were found to be immune to localized corrosion below 1000 mV (SCE). DLC-silver-platinum films demonstrated exceptional antimicrobial properties against Staphylococcus bacteria. It is believed that a galvanic couple forms between platinum and silver, which accelerates silver ion release and provides more robust antimicrobial activity. Diamondlike carbon-silver-platinum films may provide unique biological functionalities and improved lifetimes for cardiovascular, orthopaedic, biosensor, and implantable microclectromechanical systems. (c) 2005 Elsevier B.V. All rights reserved.
引用
收藏
页码:138 / 146
页数:9
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