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Статья

Silver quantum dots in plasmonic photocatalysis: linking quantum confinement to structure–function relationships

Asokan VasudevanFaculty of Business and Communications, INTI International University, 71800 Negeri Sembilan, MalaysiaSuleiman Ibrahim MohammadResearch Follower, INTI International University, 71800 Negeri Sembilan, MalaysiaZukhra YakhshievaChemistry Department, Jizzakh State Pedagogical University, Jizzakh City, UzbekistanIbrokhim SapaevHead of the Department, Physics and Chemistry, Tashkent Institute of Irrigation and Agricultural Mechanization Engineers, National Research University, Tashkent, UzbekistanMan Mohan ShuklaDepartment of Computer Science and Engineering, Pranveer Singh Institute of Technology, Kanpur, UP, IndiaMonika VermaDepartment of Chemistry, University Institute of Sciences, Chandigarh University, Mohali, Punjab, IndiaPankaj TripathiDepartment of Physics, Sharda University, Knowledge Park III, Greater Noida, IndiaTawfeeq AlghazaliEnglish Department, The Islamic University in Najaf, IraqTaraneh Hieunaz ChavoushiYoung Researchers and Elite Club, Tehran Branch, Islamic Azad University, Tehran, Iran
2026en
ABI

Аннотация

reduction, environmental remediation, and photoelectrochemical conversion. Rather than considering AgQDs as simple plasmonic additives, emerging evidence highlights their multifunctional roles in light harvesting, charge management, interfacial modulation, and catalytic activation. By integrating mechanistic insights with application-oriented developments, this review identifies the key design principles linking quantum confinement to photocatalytic function. Finally, unresolved challenges, including mechanistic ambiguity, atomic-level control, interface engineering, and scalability, are discussed to outline future directions for the rational design of next-generation AgQD photocatalysts.

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