Synthesis and antibacterial activity evaluation of Ag@HMSN nanomaterials derived from rice husk
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Abstract
This study presents the synthesis of silver-loaded hollow mesoporous silica nanoparticles (Ag@HMSN) derived from rice husk ash for antibacterial applications. HMSN was synthesized using P123 as a structure-directing agent, followed by the incorporation of silver nanoparticles through the reduction of AgNO₃ using citric acid. XRD results revealed that the silica framework was predominantly amorphous, while silver nanoparticles were well dispersed within the mesoporous structure. Meanwhile, TEM images confirmed a multilayer hollow structure with pore sizes ranging from approximately 10–25 nm, Ag nanoparticles with 22 nm of particle size, and EDS analysis verified the presence of Si, O, and Ag with a silver content of about 1 wt%. Antibacterial tests also demonstrated that Ag@HMSN exhibited inhibitory activity against Escherichia coli and Bacillus subtilis, with antibacterial efficiency increasing as the silver content increased and showing stronger activity toward E. coli. These findings together indicate that Ag@HMSN is a promising material for antibacterial and environmental treatment applications.
Keywords
Ag@HMSN, HMSN, rice husk ash, antibacterial, Silver nanoparticles
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References
Eva Krakor & cs. (2021). Hollow mesoporous silica capsules loaded with copper, silver, and zinc oxide nanoclusters for sustained antibacterial efficacy. Journal of the American Ceramic SocietyVolume 105, Issue 3 p. 1685-1696.
M.Verma & cs. (2019). Hollow silica nanoparticles synthesized from core-shell nanoparticles as highly efficient adsorbent for methylene blue and its invitro release. Mechanism and Kinetics study Colloids and Surfaces A: Physicochemical. Volume 587, 20 February 2020, 124333.
Mahdi Khoeini & cs. (2019). Improvement of hollow mesoporous silica nanoparticles synthesis by hard-templating method via CTAB surfactant. Ceramics International, Volume 45, Issue 10, July 2019, Pages 12700-12707.
Nguyên, Q. N. (2024). Khảo sát khả năng xử lý Methylane blue của vật liệu nano silica cấu trúc rỗng được tổng từ tro trấu. Tạp chí Khoa học Đại học Đồng Tháp, Tập 12, Số 8, 2024, 87-93.
Silvia Nuti & cs. (2024). Tailoring Mesoporous Silica-Coated Silver Nanoparticles and Polyurethane-Doped Films for Enhanced Antimicrobial Applications. Nanomaterials 2024, 14(5), 462.
Trăm, N. T. (2021). Nghiên cứu tổng hợp và biến tính nano silica cấu trúc rỗng với PGE, định hướng ứng dụng mang thuốc chống ung thư. (Luận án tiến sĩ, LATS Khoa học Vật liệu 9.44.01.25). Thư viện Quốc gia Việt Nam, Hà Nội.
Van Hai Le, Chi Nhan Ha Thuc & Huy Ha Thuc. (2013). Synthesis of silica nanoparticles from Vietnamese rice husk by sol–gel method. Nanoscale Research Letters, Volume 8, article number 58, (2013).
Xiaoxin Wang & cs. (2019). Mesoporous silica-protected silver nanoparticle disinfectant with controlled Ag+ ion release, efficient magnetic separation, and effective antibacterial activity. Nanoscale Adv., 2019, 1, 840-848.
Yunping Qiao & cs. (2023). Inorganic hollow mesoporous spheres-based delivery for antimicrobial agents. Frontiers of Materials Science, Volume 17, article number 230631.
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