نتایج جستجو برای: diamond like carbon

تعداد نتایج: 940060  

1998
M. A. Vesaghi

Liquid gas was used to produce DLC films on Cu, Al and steel substrates by DC plasma technique. The absorption in IR reflectance indicates, grown films are DLC. By deconvolution of room temperature UVvisible spectra of the films grown at 50 mtorr and 200C, in addition to the spectra lines reported for CL, PL, PLC and ESR, some new spectra lines were obtained. We also, have seen exciton absorpti...

2010
Ogyun Seok Young-Hwan Choi Minki Kim Jumi Kim Byungyou Hong Min-Koo Han

AlGaN/GaN Schottky Barrier Diodes (SBDs) employing the Diamond-like Carbon (DLC) passivation was proposed. The reverse blocking characteristics of the AlGaN/GaN SBD is degraded by the electron trapping effect through the surface trap states. In order to suppress the electron trapping effect and increase the breakdown voltage of AlGaN/GaN SBDs, the surface passivation or treatment should be perf...

Journal: :Journal of biomedical materials research. Part B, Applied biomaterials 2007
Ritwik Kumar Roy Kwang-Ryeol Lee

Owing to its superior tribological and mechanical properties with corrosion resistance, biocompatibility, and hemocompatibility, diamond-like carbon (DLC) has emerged as a promising material for biomedical applications. DLC films with various atomic bond structures and compositions are finding places in orthopedic, cardiovascular, and dental applications. Cells grew on to DLC coating without an...

2002
A. Grill

Diamond-like carbon (DE) films are characterized by very low friction coefficients, high wear resistance and high corrosion resistance. Depending upon the testing environment, the coefficient of friction can be as low as 0.01. As-deposited films are wear resistant in vacuum as well as in atmospheric ambient. However, the tribological properties of DLC are strongly affected by the deposition met...

2015
B. J. Jones L. Anguilano J. J. Ojeda

We demonstrate alteration in diamond-like carbon (DLC) film structure, chemistry and adhesion on steel, related to variation in the argon plasma pretreatment stage of plasma enhanced chemical vapour deposition. We relate these changes to the alteration in substrate structure, crystallinity and chemistry due to application of an argon plasma process with negative self bias up to 600 V. Adhesion ...

2005
F. Piazza D. Grambole D. Schneider C. Casiraghi A. C. Ferrari J. Robertson

Diamond-like carbon (DLC) is a promising protective coating for future optical storage technologies. The requirements place conflicting constraints on the nature of the DLC. It must be transparent at 400 nm, hard and wear-resistant, uniform, pinhole-free, have a low stress and be deposited at high rate without a high heat load on a plastic substrate. In order to optimise the films under these c...

2008
Chhaya Ravi Kant

Diamond Like Carbon (DLC) films were deposited on quartz substrates using Dense Plasma Focus (DPF) method. The formation of sp bonds as is it’s content in the film strongly depends on the substrate and it seems quartz is not a suitable substrate. However, we report here the formation of DLC films on quartz substrates that were maintained at elevated temperatures and show the content of carbon a...

2006
Xiao Liu J. A. Bucaro J. F. Vignola B. H. Houston D. B. Chrisey

We have studied the internal friction of amorphous diamond-like carbon films prepared by pulsed-laser deposition from 0.4 to 300K. The low temperature internal friction below 10K is dominated by the atomic tunnelling states for amorphous solids, which is a measure of structure disorder. We have tried to vary the content of sp carbon atoms versus sp ones by changing laser fleunce, by doping with...

2010
B Tomcik

Amorphous hydrogenated and/or nitrogenated carbon films, a-C:H/a-C:N, in overall thickness up to 2 nm are materials of choice as a mechanical and corrosion protection layer of the magnetic media in modern hard disk drive disks. In order to obtain high density and void-free films the sputtering technology has been replaced by different plasma and ion beam deposition techniques. Hydrocarbon gas p...

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