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CuO@MgO Nanocomposite as a Promising Strategy for Multidrug-Resistant Bacteria: A Study the Mechanism of Action via In Silico Prediction

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Published in:BioNanoScience
Format: Online Article RSS Article
Published: 2026
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container_title BioNanoScience
description
discipline_display Chemistry
discipline_facet Chemistry
format Online Article
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genre Journal Article
id rss_article:91449
institution FRELIP
journal_source_facet BioNanoScience
last_indexed 2026-06-14T02:03:22.160Z
publishDate 2026
publishDateSort 2026
record_format rss_article
spellingShingle CuO@MgO Nanocomposite as a Promising Strategy for Multidrug-Resistant Bacteria: A Study the Mechanism of Action via In Silico Prediction
Chemistry
General
Chemistry
sub_discipline_display General
sub_discipline_facet General
subject_display Chemistry
General
Chemistry
Chemistry
General
Chemistry
subject_facet Chemistry
General
Chemistry
title CuO@MgO Nanocomposite as a Promising Strategy for Multidrug-Resistant Bacteria: A Study the Mechanism of Action via In Silico Prediction
title_auth CuO@MgO Nanocomposite as a Promising Strategy for Multidrug-Resistant Bacteria: A Study the Mechanism of Action via In Silico Prediction
title_full CuO@MgO Nanocomposite as a Promising Strategy for Multidrug-Resistant Bacteria: A Study the Mechanism of Action via In Silico Prediction
title_fullStr CuO@MgO Nanocomposite as a Promising Strategy for Multidrug-Resistant Bacteria: A Study the Mechanism of Action via In Silico Prediction
title_full_unstemmed CuO@MgO Nanocomposite as a Promising Strategy for Multidrug-Resistant Bacteria: A Study the Mechanism of Action via In Silico Prediction
title_short CuO@MgO Nanocomposite as a Promising Strategy for Multidrug-Resistant Bacteria: A Study the Mechanism of Action via In Silico Prediction
title_sort cuo@mgo nanocomposite as a promising strategy for multidrug-resistant bacteria: a study the mechanism of action via in silico prediction
topic Chemistry
General
Chemistry
url https://link.springer.com/article/10.1007/s12668-026-02665-8