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- W3145078847 endingPage "991" @default.
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- W3145078847 abstract "Multicomponent nanoparticles containing carbon, tungsten carbide and silver (carbon-WC-Ag nanoparticles) were simply synthesized via in-liquid electrical discharge plasma, the so-called solution plasma process, by using tungsten electrodes immersed in palm oil containing droplets of AgNO3 solution as carbon and silver precursors, respectively. The atomic ratio of carbon:W:Ag in carbon-WC-Ag nanoparticles was 20:1:3. FE-SEM images revealed that the synthesized carbon-WC-Ag nanoparticles with particle sizes in the range of 20–400 nm had a spherical shape with a bumpy surface. TEM images of carbon-WC-Ag nanoparticles showed that tungsten carbide nanoparticles (WCNPs) and silver nanoparticles (AgNPs) with average particle sizes of 3.46 nm and 72.74 nm, respectively, were dispersed in amorphous carbon. The carbon-WC-Ag nanoparticles were used as multifunctional fillers for the preparation of polylactic acid (PLA) composite films, i.e., PLA/carbon-WC-Ag, by solution casting. Interestingly, the coexistence of WCNPs and AgNPs in carbon-WC-Ag nanoparticles provided a benefit for the co-nucleation ability of WCNPs and AgNPs, resulting in enhanced crystallization of PLA, as evidenced by the reduction in the cold crystallization temperature of PLA. At the low content of 1.23 wt% carbon-WC-Ag nanoparticles, the Young’s modulus and tensile strength of PLA/carbon-WC-Ag composite films were increased to 25.12% and 46.08%, respectively. Moreover, the PLA/carbon-WC-Ag composite films possessed antibacterial activities." @default.
- W3145078847 created "2021-04-13" @default.
- W3145078847 creator A5029627701 @default.
- W3145078847 creator A5034712849 @default.
- W3145078847 creator A5041950940 @default.
- W3145078847 date "2021-03-24" @default.
- W3145078847 modified "2023-09-26" @default.
- W3145078847 title "Plasma-Assisted Synthesis of Multicomponent Nanoparticles Containing Carbon, Tungsten Carbide and Silver as Multifunctional Filler for Polylactic Acid Composite Films" @default.
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- W3145078847 doi "https://doi.org/10.3390/polym13070991" @default.
- W3145078847 hasPubMedCentralId "https://www.ncbi.nlm.nih.gov/pmc/articles/8037156" @default.
- W3145078847 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/33804863" @default.
- W3145078847 hasPublicationYear "2021" @default.
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