Analysis on silica and graphene nanomaterials obtained from rice straw for antimicrobial potential
This study focuses on the encapsulation of silica and graphene nanoparticles and their potential applications. The encapsulation enhances the properties and effectiveness of these nanoparticles, with silica providing stability and graphene contributing to high surface area and electrical conductivit...
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my.ums.eprints.414262024-10-16T06:11:03Z https://eprints.ums.edu.my/id/eprint/41426/ Analysis on silica and graphene nanomaterials obtained from rice straw for antimicrobial potential M. N. A. Uda N. H. A Jalil M. Firdaus A. Muttalib F. Abdullah Uda Hashim Subash C. B. Gopinath Muhammad Nur Afnan Uda Shahidah Arina Shamsuddin N. A Karim Ahmad Radi Wan Yaakub N. H. Ibrahim Tijjani Adam N. A. Parmin Nadiya Akmal Baharum TA1-2040 Engineering (General). Civil engineering (General) TK1-9971 Electrical engineering. Electronics. Nuclear engineering This study focuses on the encapsulation of silica and graphene nanoparticles and their potential applications. The encapsulation enhances the properties and effectiveness of these nanoparticles, with silica providing stability and graphene contributing to high surface area and electrical conductivity. Characterization of silica-graphene nanoparticles was conducted using various techniques including High Power Microscope (HPM), Scanning Electron Microscope (SEM), Energy-dispersive X-ray spectroscopy (EDS), and 3D Nano Profiler. The antimicrobial activity of silica, graphene, and silica-graphene nanoparticles was evaluated using a disc diffusion assay against E. coli and B. subtilis at varying concentrations. Results showed significant antimicrobial activity, with the inhibition zone being directly proportional to the concentration. Silica-graphene nanoparticles demonstrated higher efficacy against E. coli compared to B. subtilis, attributed to differences in cell wall structure. Statistical analysis using ANOVA confirmed significant differences in antimicrobial activity among the tested components. Penerbit UniMAP 2024 Article NonPeerReviewed text en https://eprints.ums.edu.my/id/eprint/41426/1/ABSTRACT.pdf text en https://eprints.ums.edu.my/id/eprint/41426/2/FULL%20TEXT.pdf M. N. A. Uda and N. H. A Jalil and M. Firdaus A. Muttalib and F. Abdullah and Uda Hashim and Subash C. B. Gopinath and Muhammad Nur Afnan Uda and Shahidah Arina Shamsuddin and N. A Karim and Ahmad Radi Wan Yaakub and N. H. Ibrahim and Tijjani Adam and N. A. Parmin and Nadiya Akmal Baharum (2024) Analysis on silica and graphene nanomaterials obtained from rice straw for antimicrobial potential. International Journal of Nanoelectronics and Materials (IJNeaM), 17. pp. 221-228. ISSN 0198-5761 https://doi.org/10.58915/ijneam.v17iJune.861 |
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TA1-2040 Engineering (General). Civil engineering (General) TK1-9971 Electrical engineering. Electronics. Nuclear engineering M. N. A. Uda N. H. A Jalil M. Firdaus A. Muttalib F. Abdullah Uda Hashim Subash C. B. Gopinath Muhammad Nur Afnan Uda Shahidah Arina Shamsuddin N. A Karim Ahmad Radi Wan Yaakub N. H. Ibrahim Tijjani Adam N. A. Parmin Nadiya Akmal Baharum Analysis on silica and graphene nanomaterials obtained from rice straw for antimicrobial potential |
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This study focuses on the encapsulation of silica and graphene nanoparticles and their potential applications. The encapsulation enhances the properties and effectiveness of these nanoparticles, with silica providing stability and graphene contributing to high surface area and electrical conductivity. Characterization of silica-graphene nanoparticles was conducted using various techniques including High Power Microscope (HPM), Scanning Electron Microscope (SEM), Energy-dispersive X-ray spectroscopy (EDS), and 3D Nano Profiler. The antimicrobial activity of silica, graphene, and silica-graphene nanoparticles was evaluated using a disc diffusion assay against E. coli and B. subtilis at varying concentrations. Results showed significant antimicrobial activity, with the inhibition zone being directly proportional to the concentration. Silica-graphene nanoparticles demonstrated higher efficacy against E. coli compared to B. subtilis, attributed to differences in cell wall structure. Statistical analysis using ANOVA confirmed significant differences in antimicrobial activity among the tested components. |
format |
Article |
author |
M. N. A. Uda N. H. A Jalil M. Firdaus A. Muttalib F. Abdullah Uda Hashim Subash C. B. Gopinath Muhammad Nur Afnan Uda Shahidah Arina Shamsuddin N. A Karim Ahmad Radi Wan Yaakub N. H. Ibrahim Tijjani Adam N. A. Parmin Nadiya Akmal Baharum |
author_facet |
M. N. A. Uda N. H. A Jalil M. Firdaus A. Muttalib F. Abdullah Uda Hashim Subash C. B. Gopinath Muhammad Nur Afnan Uda Shahidah Arina Shamsuddin N. A Karim Ahmad Radi Wan Yaakub N. H. Ibrahim Tijjani Adam N. A. Parmin Nadiya Akmal Baharum |
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M. N. A. Uda |
title |
Analysis on silica and graphene nanomaterials obtained from rice straw for antimicrobial potential |
title_short |
Analysis on silica and graphene nanomaterials obtained from rice straw for antimicrobial potential |
title_full |
Analysis on silica and graphene nanomaterials obtained from rice straw for antimicrobial potential |
title_fullStr |
Analysis on silica and graphene nanomaterials obtained from rice straw for antimicrobial potential |
title_full_unstemmed |
Analysis on silica and graphene nanomaterials obtained from rice straw for antimicrobial potential |
title_sort |
analysis on silica and graphene nanomaterials obtained from rice straw for antimicrobial potential |
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Penerbit UniMAP |
publishDate |
2024 |
url |
https://eprints.ums.edu.my/id/eprint/41426/1/ABSTRACT.pdf https://eprints.ums.edu.my/id/eprint/41426/2/FULL%20TEXT.pdf https://eprints.ums.edu.my/id/eprint/41426/ https://doi.org/10.58915/ijneam.v17iJune.861 |
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1814049459003195392 |