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Volumn 879, Issue 21, 2011, Pages 1847-1850
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Surface energetics of bone mineral and synthetic hydroxyapatite using inverse gas chromatography
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Author keywords
Biological scaffolds; Biomaterial; Bone; Hydroxyapatite coating; Inverse gas chromatography; Surface energy
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Indexed keywords
BIO-SURFACES;
BIOLOGICAL APATITES;
BIOLOGICAL SCAFFOLDS;
BIOMATERIAL SURFACES;
BONE MINERALS;
CELL ATTACHMENTS;
HOMOLOGOUS SERIES;
HYDROXYAPATITE COATING;
INVERSE GAS CHROMATOGRAPHY;
N-ALKANES;
NATURAL BONE;
PROBE MOLECULES;
PROTEIN ADHESION;
SPECIFIC INTERACTION;
SURFACE ENERGETICS;
SURFACE ENERGIES;
SURFACE FREE ENERGY;
SURFACE HETEROGENEITIES;
SYNTHETIC COMPOUNDS;
SYNTHETIC HYDROXYAPATITE;
TRABECULAR BONES;
ADHESION;
APATITE;
BIOLOGICAL MATERIALS;
BONE;
CHEMICAL COMPOUNDS;
HYDROXYAPATITE;
INTERFACIAL ENERGY;
OLEFINS;
PARAFFINS;
SCAFFOLDS (BIOLOGY);
SILICATE MINERALS;
SURFACE CHEMISTRY;
VAN DER WAALS FORCES;
GAS CHROMATOGRAPHY;
ALKENE;
BIOMATERIAL;
HYDROXYAPATITE;
ADSORPTION;
ARTICLE;
BONE MINERAL;
CELL ADHESION;
CHEMICAL INTERACTION;
INVERSE GAS CHROMATOGRAPHY;
PRIORITY JOURNAL;
TRABECULAR BONE;
ALKANES;
ANIMALS;
BONE SUBSTITUTES;
CATTLE;
CHROMATOGRAPHY, GAS;
FEMUR;
HYDROXYAPATITES;
SURFACE PROPERTIES;
THERMODYNAMICS;
BOVINAE;
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EID: 79959342620
PISSN: 15700232
EISSN: 1873376X
Source Type: Journal
DOI: 10.1016/j.jchromb.2011.04.035 Document Type: Article |
Times cited : (14)
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References (19)
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