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Biocompatibility studies of HDPE–HA composites with different HA content
ArticleAbstract: High-density polyethylene–hydroxyapatite (HDPE–HA) composites with different filler content (5–20 %)Palabras claves:Biocompatibility, Bone cells, HDPE–HA composites, In situ polymerizationAutores:Carmen A., Hermán V., Karam A.R., Lozada L., Luis José Borrero González, Márquez A., Noris-Suarez K., Romero K., Yndriago L.Fuentes:googlescopusHDPE-HA composites synthetized by in situ polymerization with different filler content
Conference ObjectAbstract: In Situ ethylene polymerization was used to synthesize high density polyethylene - hydroxyapatite (HPalabras claves:In situ ethylene polymerization, nanocomposites, Nanoparticles, polymer, thermal propertiesAutores:Carmen A., Hermán V., Karam A.R., Luis José Borrero González, Romero K.Fuentes:googlescopusHigh density polyethylene - Hydroxyapatite composites synthetized by in situ ethylene polymerization
ArticleAbstract: A novel synthesis method of obtaining polyethylene - hydroxyapatite (HDPE-HA) composites is proposedPalabras claves:COMPOSITES, Hydroxiapatite, Polyethylene, Synthesis, thermal degradationAutores:Carmen A., Hermán V., Karam A.R., Luis José Borrero GonzálezFuentes:googlescopusThermodegradative study of HDPE-HA nanocomposites: IKP and e <inf>2</inf> function
ArticleAbstract: IKP and E 2 function methods were used to study thermal stability of HDPE-HA nanocomposites synthesiPalabras claves:Degradation mechanisms, E function method 2, IKP method, nanocomposites, Thermal stabilityAutores:Carmen A., Covis M., Hermán V., Karam A.R., Luis José Borrero GonzálezFuentes:googlescopus