Antibacterial Type-II InP/ZnO Quantum Dots Via Multimodal Reactive Oxygen Species
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Date
2024
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Journal ISSN
Volume Title
Publisher
Elsevier Science SA
Open Access Color
Green Open Access
Yes
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Publicly Funded
No
Abstract
The emergence of multidrug-resistant bacteria as a global health threat has necessitated the exploration of alternative treatments to combat bacterial infections. Among these, photocatalytic nanomaterials such as quantum dots (QDs) have shown great promise and type-I QDs have been investigated thus far. In this study, we introduce type-II InP/ZnO core/shell QDs that are ligand-exchanged with a short-chain inorganic sulfide ion (S2-) for antibacterial activity. Interestingly, InP/ZnO QDs simultaneously generate reactive oxygen species (ROS) including hydroxyl (center dot OH) and superoxide (O-2(center dot-) ) radicals, while only O-2(center dot-) radicals can be released by the type-I sulfide-capped InP/ZnS QDs. The optimized nanostructure achieved effective inhibition of Pseudomonas aeruginosa and Escherichia coli bacteria growth to the level of 99.99% and 70.31% under low-intensity green light illumination of 5 mW.cm(-2). Our findings highlight the importance of type-II QDs as a new avenue for developing effective antibacterial agents against drug-resistant pathogens.
Description
Qureshi, Mohammad Haroon/0000-0002-2376-1246; Onal, Asim/0000-0003-3682-6042; Almammadov, Toghrul/0000-0002-1336-4650; Sahin, Mehmet/0000-0002-9419-1711; Kolemen, Safacan/0000-0003-4162-5587
Keywords
Quantum Dot, Antibacterial, Type-II, INP, Reactive Oxygen Species, ROS, Pseudomonas Aeruginosa, Escherichia Coli, ZNo, ZnS, Antibacterial, Chemical engineering, ZnS, InP, Pseudomonas aeruginosa, Quantum dot, Escherichia coli, ZnO, Quantum dot; Antibacterial; Type-II; InP; Reactive oxygen species; ROS; Pseudomonas aeruginosa; Escherichia coli; ZnO; ZnS, ROS, Type-II, Reactive oxygen species
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Citation
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Q1
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Q1

OpenCitations Citation Count
13
Source
Chemical Engineering Journal
Volume
480
Issue
Start Page
148140
End Page
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Citations
CrossRef : 6
Scopus : 21
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Mendeley Readers : 18
SCOPUS™ Citations
23
checked on Feb 03, 2026
Web of Science™ Citations
21
checked on Feb 03, 2026
Page Views
1
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