Аутор и коаутори: Tijana Adamović, Valentina Veselinović, Nataša Trtić, Miloš Hadži - Mihailović, Suzana Gotovac - Atlagić, Milica Balaban, Hatorri Yoshiyuki, Sugiyama Hironori, Andrej Ivanič, Rudolf Rebeka

Mechanical properties of new denture base material modified with gold nanoparticles

Година објаве: 2021

Језик: Енглески

Сажетак:

often is application its and, prostheses dental of production the in material used commonly most the is) PMMA) (methacrylate methyl(Poly: Purpose the improve to composite) AuNps (nanoparticles gold/PMMA a of preparation the was work this of aim The. biofilm of formation the by accompanied present the In). USP (Pyrolysis Spray Ultrasonic by acetate) III (gold from synthesised were AuNPs The. PMMA polymerised-heat of properties antimicrobial ,nanocomposite` AuNps/PMMA the of hardness and density, conductivity thermal as well as, investigated were modulus elastic and strength flexural, study was hardness surface and, test bending point-three a using measured were modulus elastic and strength Flexural. AuNps of concentrations different with Density. technique) TPS (Source Plane Transient the using measured was samples the of conductivity thermal The. test hardness Vickers the using evaluated .experiments the from obtained data the on conducted was analysis Statistical. procedure pycnometry the by determined was and conductivity Thermal. AuNps containing groups all for decreased nanocomposites PMMA/AuNps of modulus elastic and strength flexural The: Results increased values hardness Vickers. groups all in significant not was it but, group control the to compared AuNps containing groups all in increased density means by performed was analysis Statistical. AuNps of% wt 74.0 at obtained HV 45.21 value highest the with, content` AuNps in increase an with significantly .package software 19 SPSS the of the, time same the At. modulus elastic and strength flexural the of decrease to led resin PMMA polymerised-heat into AuNps of Incorporation: Conclusions .increased hardness and conductivity thermal, d