Preparation and analysis of chemically gradient functional bioceramic coating formed by pulsed laser deposition.

P Rajesh, C V Muraleedharan, S Sureshbabu, Manoj Komath, Harikrishna Varma

Bioceramics Laboratory, Biomedical Technology Wing, Sree Chitra Tirunal Institute for Medical Sciences and Technology (SCTIMST), Trivandrum, 695012, Kerala, India.

Journal Article: Journal of Materials Science Materials in Medicine (impact factor: 1.96). 11/2011; 23(2):339-48. DOI: 10.1007/s10856-011-4501-6

Abstract

Bioactive ceramic coatings based on calcium phosphates yield better functionality in the human body for a variety of metallic implant devices including orthopaedic and dental prostheses. In the present study chemically and hence functionally gradient bioceramic coating was obtained by pulsed laser deposition method. Calcium phosphate bioactive ceramic coatings based on hydroxyapatite (HA) and tricalcium phosphate (TCP) were deposited over titanium substrate to produce gradation in physico-chemical characteristics and in vitro dissolution behaviour. Sintered targets of HA and α-TCP were deposited in a multi target laser deposition system. The obtained deposits were characterized by X-ray diffraction, fourier transform infrared spectroscopy, scanning electron microscopy and energy dispersive X-ray analysis. Inductively coupled plasma spectroscopy was used to estimate the in vitro dissolution behaviour of coatings. The variation in mechanical property of the gradient layer was evaluated through scratch test and micro-indentation hardness. The bioactivity was examined in vitro with respect to the ability of HA layer to form on the surface as a result of contact with simulated body fluid. It could be inferred that chemically gradient functional bioceramic coating can be produced by laser deposition of multiple sintered targets with variable chemical composition.

Source: PubMed

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Keywords

Bioactive ceramic coatings
 
Calcium phosphate bioactive ceramic coatings
 
calcium phosphates yield
 
chemically gradient functional bioceramic coating
 
dental prostheses
 
functionally gradient bioceramic coating
 
mechanical property
 
metallic implant devices
 
multi target laser deposition system
 
multiple sintered targets
 
obtained deposits
 
pulsed laser deposition method
 
scanning electron microscopy
 
simulated body fluid
 
Sintered targets
 
titanium substrate
 
tricalcium phosphate
 
variable chemical composition
 
vitro dissolution behaviour
 
X-ray diffraction