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Microwave Irradiation Synthesis Silver Nanoparticle

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Microwave Irradiation Synthesis Silver Nanoparticle ( microwave-irradiation-synthesis-silver-nanoparticle )

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Polymers 2020, 12, 1155 Polymers 2020, 12, x FOR PEER REVIEW Figure 9. Berkovich nanoindentation: (a) elastic modulus and (b) hardness. Figure 9. Berkovich nanoindentation: (a) elastic modulus and (b) hardness. 3.9. Antibacterial Activities of the Nanocomposites 3.9. Antibacterial Activities of the Nanocomposites 12 of 16 12 of 16 The antibacterial activities of R-(GO-(PS-PMMA))/AgNPs and RGO/AgNPs-(PS-PMMA) The antibacterial activities of R-(GO-(PS-PMMA))/AgNPs and RGO/AgNPs-(PS-PMMA) nanocomposites against E. coli HB 101 K-12 compared by using the diameter inhibition zone (DIZ) in the disk diffusion test are depicted in Figure 10. The nanocomposites were used as a film for nanocomposites against E. coli HB 101 K-12 compared by using the diameter inhibition zone (DIZ) in antibacterial studies. It was observed that the RGO/AgNPs-(PS-PMMA) nanocomposites exhibited the disk diffusion test are depicted in Figure 10. The nanocomposites were used as a film for weaker inhibition with a 3 mm inhibition zone. The R-(GO-(PSPMMA))/AgNPs nanocomposites, on antibactetrhiealotshteurdhaiensd.,dItepwicatesdoabstsreornvgerdinthibaitiothnezoRneG,wOi/thAagvNalPues-o(fP2S7-mPmM.MUsAua)llny,aanmoicoromorpgaonsiistmes exhibited that is sensitive to tested samples shows a larger DIZ, compared with smaller or no DIZ for a resistant weaker inhibition with a 3 mm inhibition zone. The R-(GO-(PSPMMA))/AgNPs nanocomposites, on organism [6–11]. Hence, the results show that the MWI-prepared nanocomposites had stronger the other hand, depicted a stronger inhibition zone, with a value of 27 mm. Usually, a microorganism antimicrobial activity against the tested E. coli microbial strains compared to that of the in situ-prepared that is sensitive to tested samples shows a larger DIZ, compared with smaller or no DIZ for a resistant nanocomposite. The superior antibacterial activity of the nanocomposites prepared by the MWI organismm[e6th–o1d1i]n. cHomenpacreis,otnhteo bruelskuplotslymsheroizwatiothnactoutlhdebeMduWe tIo-pthrehpiagrhedr mnasasnforaccotimonpaonsditsemsalhleard stronger antimicrobial activity against the tested E. coli microbial strains compared to that of the in situ- prepared nanocomposite. The superior antibacterial activity of the nanocomposites prepared by the MWI method in comparison to bulk polymerization could be due to the higher mass fraction and smaller particle size of the AgNPs. This could be due to damaging proteins and genetic material that

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