Production of thin calcium phosphate coatings from glass source materials

Calcium phosphate (CaP) coatings, from 40,000 to 200,000 nm thick, on titanium and titanium alloy substrates, were produced using radio frequency (RF) sputtering. Such coatings on dental implants have the potential for improving initial bone ingrowth rates. The success of these coatings may allow th...

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Published inJournal of materials science. Materials in medicine Vol. 13; no. 2; pp. 175 - 184
Main Authors Haman, J D, Scripa, R N, Rigsbee, J M, Lucas, L C
Format Journal Article
LanguageEnglish
Published United States Springer Nature B.V 01.02.2002
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Abstract Calcium phosphate (CaP) coatings, from 40,000 to 200,000 nm thick, on titanium and titanium alloy substrates, were produced using radio frequency (RF) sputtering. Such coatings on dental implants have the potential for improving initial bone ingrowth rates. The success of these coatings may allow the movement from two stage implant systems to single stage implant systems, significantly reducing the time required for healing and fixture placement. Glass source materials were developed for the RF sputtering facility and the resultant coatings were characterized and compared to coatings sputtered from a conventional plasma sprayed hydroxyapatite (HA) source material. The coatings were characterized according to their chemistry, crystalline orientation, and residual strain.
AbstractList Calcium phosphate (CaP) coatings, from 40 000 to 200 000 nm thick, on titanium and titanium alloy substrates, were produced using radio frequency (RF) sputtering. Such coatings on dental implants have the potential for improving initial bone ingrowth rates. The success of these coatings may allow the movement from two stage implant systems to single stage implant systems, significantly reducing the time required for healing and fixture placement. Glass source materials were developed for the RF sputtering facility and the resultant coatings were characterized and compared to coatings sputtered from a conventional plasma sprayed hydroxyapatite (HA) source material. The coatings were characterized according to their chemistry, crystalline orientation, and residual strain.
Calcium phosphate (CaP) coatings, from 40000 to 200000 nm thick, on titanium and titanium alloy substrates, were produced using radio frequency (RF) sputtering. Such coatings on dental implants have the potential for improving initial bone ingrowth rates. The success of these coatings may allow the movement from two stage to single stage implant systems. Glass source materials were developed for the RF sputtering facility and the resultant coatings were characterised and compared to coatings sputtered from a conventional plasma sprayed hydroxyapatite (HA) source material. The coatings were characterised according to their chemistry, crystalline orientation, and residual strain. 40 refs.
Calcium phosphate (CaP) coatings, from 40 000 to 200 000 nm thick, on titanium and titanium alloy substrates, were produced using radio frequency (RF) sputtering. Such coatings on dental implants have the potential for improving initial bone ingrowth rates. The success of these coatings may allow the movement from two stage implant systems to single stage implant systems, significantly reducing the time required for healing and fixture placement. Glass source materials were developed for the RF sputtering facility and the resultant coatings were characterized and compared to coatings sputtered from a conventional plasma sprayed hydroxyapatite (HA) source material. The coatings were characterized according to their chemistry, crystalline orientation, and residual strain.[PUBLICATION ABSTRACT]
Author Rigsbee, J M
Lucas, L C
Scripa, R N
Haman, J D
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CitedBy_id crossref_primary_10_1089_ten_tea_2009_0312
crossref_primary_10_1089_ten_tea_2011_0366
crossref_primary_10_1016_S0955_2219_02_00278_9
crossref_primary_10_1002_jbm_b_30062
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Snippet Calcium phosphate (CaP) coatings, from 40,000 to 200,000 nm thick, on titanium and titanium alloy substrates, were produced using radio frequency (RF)...
Calcium phosphate (CaP) coatings, from 40 000 to 200 000 nm thick, on titanium and titanium alloy substrates, were produced using radio frequency (RF)...
Calcium phosphate (CaP) coatings, from 40000 to 200000 nm thick, on titanium and titanium alloy substrates, were produced using radio frequency (RF)...
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SubjectTerms Biomedical materials
Calcium phosphates
Materials science
Titanium alloys
Transplants & implants
Title Production of thin calcium phosphate coatings from glass source materials
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