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Synthesis, Characterization and Antimicrobial Study of Polyacetal-Co complex/Nano Chitosan polymer blend
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Polycyclicacetal was prepared by the reaction of PEG with 4-nitrobenzaldehyde. Cobalt was used for producing a polymer metal complex and solution casting was used to produce a polymer blend including nano chitosan. All produced compounds have been characterized by FT-IR, DSC/ TGA, and SEM techniques as well as biological activity. The production of polyacetal is illustrated by the FT-IR analysis. The DSC/TGA results indicate the prepared polymer blends' thermal stability. Staphylococcus aureas, Klebsiella pneumoniae, Bacillus subtilis, and Escherichia coli were the four types of bacteria selected to study and evaluate the antibacterial activity of produced polyacetal, its metal complex, and polymer blend. Results indicates that there is a greater potential to kill bacteria by increasing the amount of polyacetal-Co complex.
Title: Synthesis, Characterization and Antimicrobial Study of Polyacetal-Co complex/Nano Chitosan polymer blend
Description:
Polycyclicacetal was prepared by the reaction of PEG with 4-nitrobenzaldehyde.
Cobalt was used for producing a polymer metal complex and solution casting was used to produce a polymer blend including nano chitosan.
All produced compounds have been characterized by FT-IR, DSC/ TGA, and SEM techniques as well as biological activity.
The production of polyacetal is illustrated by the FT-IR analysis.
The DSC/TGA results indicate the prepared polymer blends' thermal stability.
Staphylococcus aureas, Klebsiella pneumoniae, Bacillus subtilis, and Escherichia coli were the four types of bacteria selected to study and evaluate the antibacterial activity of produced polyacetal, its metal complex, and polymer blend.
Results indicates that there is a greater potential to kill bacteria by increasing the amount of polyacetal-Co complex.
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