研究目的
To fabricate size-controlled ZnO nanoparticles using various capping agents and evaluate their cytotoxic and antitermite activity.
研究成果
The study successfully fabricated size-controlled ZnO NPs using a novel green approach with Syzygium cumini leaves extract as a capping agent. The NPs exhibited excellent photocatalytic, antimicrobial, and antitermite activities, making them potential candidates for environmental and medical applications.
研究不足
The study did not explore the long-term environmental impact of ZnO NPs or their potential toxicity to non-target organisms. The antimicrobial activity was limited to specific bacterial and fungal strains.
1:Experimental Design and Method Selection:
ZnO NPs were fabricated by green adeptness with and without using capping agents including Syzygium cumini leaves extract, starch, and CTAB.
2:Sample Selection and Data Sources:
The study used Zn(NO3)
3:6H2O, NaOH, CTAB, commercial soluble starch, and brilliant green dye. List of Experimental Equipment and Materials:
UV/Vis spectrophotometer (UVD-3500, Lambod, Inc.), PL spectrophotometer (Hitachi- F-7000 FL Spectrophotometer), ATR-FTIR spectrophotometer, EDX, XRD (D8 Advance, Bruker Corporation, USA), SEM (JSM-6510, FORMAT JOEL/EO).
4:Experimental Procedures and Operational Workflow:
Synthesis of ZnO NPs by chemical and green method, photocatalytic degradation of brilliant green dye, antitermitic activity assay, antimicrobial and antifungal activity assay.
5:Data Analysis Methods:
UV/Vis analysis, PL spectrum analysis, SEM and XRD analysis for particle size and crystalline nature, statistical analysis for antitermitic activity.
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PL spectrophotometer
F-7000 FL
Hitachi
Photoluminescence spectrum recording
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X-ray diffractometer
D8 Advance
Bruker Corporation
Grain size and phase purity evaluation
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UV/Vis spectrophotometer
UVD-3500
Lambod, Inc.
Optical properties characterization
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ATR-FTIR spectrophotometer
Chemical composition study
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SEM
JSM-6510
FORMAT JOEL/EO
Shape and size characterization of NPs
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