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Antibacterial Properties of Two-Dimensional Nanomaterials

  • Elishba Noor
  • , Usman Liaqat
  • , Waqas Qamar Zaman
  • , Sabir Hussain
  • , Asif Shahzad
  • , Kashif Rasool
  • , Zaeem Bin Babar
  • , Waheed Miran*
  • *Corresponding author for this work
    • National University of Sciences and Technology Pakistan
    • Institute of Space Technology
    • Uppsala University

    Research output: Chapter in Book/Report/Conference proceedingChapterpeer-review

    Abstract

    Many bacterial species have developed the ability to tolerate multiple drugs, and hence there is a severe threat in treating infectious diseases. Since the conventional drugs are becoming largely ineffective, there is an urgent need to find novel antibacterial strategies. To this end, the development of nanomaterials, mainly two-dimensional (2D) nanomaterials, has emerged as a new class of antimicrobial agents that demonstrate strong antimicrobial properties and are less susceptible to bacterial resistance. Various mechanisms associated with the antibacterial activity of 2D nanomaterials have been exhibited, including physical or mechanical damage, the release of controlled drug/metallic ions, multi-mode synergistic antibacterial activity, oxidative stress, and photothermal/photodynamic effects. In addition to the detailed mechanisms involved in antibacterial activities, this chapter discusses various types of 2D nanomaterials used for antibacterial activities. For better understanding, the 2D nanomaterials are classified into carbon and non-carbon based for antibacterial activities. The present challenges and possible future directions for the development of 2D nanomaterials with advanced antimicrobial properties are also discussed.

    Original languageEnglish
    Title of host publicationSpringer Series in Materials Science
    PublisherSpringer Science and Business Media Deutschland GmbH
    Pages137-160
    Number of pages24
    DOIs
    Publication statusPublished - 2023

    Publication series

    NameSpringer Series in Materials Science
    Volume332
    ISSN (Print)0933-033X
    ISSN (Electronic)2196-2812

    Keywords

    • 2D nanomaterials
    • Antibacterial mechanism
    • Antibacterial properties
    • Antibiotics
    • Antimicrobial resistance

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