Efficient catalytic and antimicrobial activity of polyvinylpyrrolidone-capped silver oxide with molecular docking analysis

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MetadadosDescriçãoIdioma
Autor(es): dc.contributorGovernment College University Lahore-
Autor(es): dc.contributorUniversity of Central Punjab-
Autor(es): dc.contributorUniversity of Agriculture-
Autor(es): dc.contributorCOMSAT University Lahore-
Autor(es): dc.contributorKing Fahd University of Petroleum & Minerals-
Autor(es): dc.contributorUniversidade Estadual Paulista (UNESP)-
Autor(es): dc.contributorKing Khalid University-
Autor(es): dc.creatorIkram, Muhammad-
Autor(es): dc.creatorShujah, Tahira-
Autor(es): dc.creatorHaider, Ali-
Autor(es): dc.creatorShahzadi, Anum-
Autor(es): dc.creatorHassan, Mudassir-
Autor(es): dc.creatorUl-Hamid, Anwar-
Autor(es): dc.creatorUllah, Hameed-
Autor(es): dc.creatorJeridi, Mouna-
Data de aceite: dc.date.accessioned2025-08-21T23:39:09Z-
Data de disponibilização: dc.date.available2025-08-21T23:39:09Z-
Data de envio: dc.date.issued2025-04-29-
Data de envio: dc.date.issued2025-04-01-
Fonte completa do material: dc.identifierhttp://dx.doi.org/10.1016/j.jics.2025.101643-
Fonte completa do material: dc.identifierhttps://hdl.handle.net/11449/299810-
Fonte: dc.identifier.urihttp://educapes.capes.gov.br/handle/11449/299810-
Descrição: dc.descriptionIn this study, polyvinylpyrrolidone (PVP)-capped silver oxide (AgO) nanostructures were synthesized with co-precipitation method. The presence of silver nanoparticles in AgO makes them unstable because of high surface energy and tends to agglomerate. This research aims to synthesize less toxic, cost-effective AgO nanoparticles and modify the surface properties with polymer doping. Monoclinic structure of AgO was confirmed through XRD analysis and no structure change was observed with PVP. With dopant, bandgap energy (Eg) was decreased from 3.04 to 2.95 eV. PVP-modified AgO nanostructure showed maximum degradation of RhB dye in neutral media with an efficacy of 81.44 % and significant antimicrobial zones (7.45 ± 0.04–9.75 ± 0.02) against S. aureus in maximum concentrations. Molecular docking validated the inhibitory impact of PVP-AgO articulating their bactericide influence for DNA gyrase and tyrosyl-tRNA synthetase in S. aureus.-
Descrição: dc.descriptionKing Khalid University-
Descrição: dc.descriptionSolar Cell Applications Research Lab Department of Physics Government College University Lahore, Punjab-
Descrição: dc.descriptionDepartment of Physics University of Central Punjab, Punjab-
Descrição: dc.descriptionDepartment of Clinical Sciences Faculty of Veterinary and Animal Sciences Muhammad Nawaz Shareef University of Agriculture, Punjab-
Descrição: dc.descriptionDepartment of Pharmacy COMSAT University Lahore-
Descrição: dc.descriptionCore Research Facilities King Fahd University of Petroleum & Minerals-
Descrição: dc.descriptionDepartment of Physics and Meteorology School of Sciences Sao Paulo State University (UNESP), Bauru-
Descrição: dc.descriptionBiology Department College of Science King Khalid University-
Descrição: dc.descriptionDepartment of Physics and Meteorology School of Sciences Sao Paulo State University (UNESP), Bauru-
Idioma: dc.languageen-
Relação: dc.relationJournal of the Indian Chemical Society-
???dc.source???: dc.sourceScopus-
Palavras-chave: dc.subjectAntimicrobial-
Palavras-chave: dc.subjectCapping agent-
Palavras-chave: dc.subjectCatalysis-
Palavras-chave: dc.subjectSilver oxide-
Título: dc.titleEfficient catalytic and antimicrobial activity of polyvinylpyrrolidone-capped silver oxide with molecular docking analysis-
Tipo de arquivo: dc.typelivro digital-
Aparece nas coleções:Repositório Institucional - Unesp

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