A UV pulsed lasers was employed to produce C and Ti ions of different charge with current densities of the order of 10 mA/cm(2). A post ion acceleration, up to 30 W, was employed to increase the ion energy and to implant polyethylene biocompatible surfaces up to a depth of about 200 nm. Preliminary results about surface properties indicate that implanted surfaces have higher wetting and micro-hardness with respect to un-implanted ones.

Modification studies of polyethylene by multi-ion implantation by laser ion source - art. no. 634638

Velardi Luciano;
2007

Abstract

A UV pulsed lasers was employed to produce C and Ti ions of different charge with current densities of the order of 10 mA/cm(2). A post ion acceleration, up to 30 W, was employed to increase the ion energy and to implant polyethylene biocompatible surfaces up to a depth of about 200 nm. Preliminary results about surface properties indicate that implanted surfaces have higher wetting and micro-hardness with respect to un-implanted ones.
2007
978-0-8194-6430-9
UV laser
laser plasma
laser ion source
germanium
ion implantation
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/412253
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