Silver Nanoparticle Stability with Different Reducing and Capping Agents
by Krutagn Patel
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Description
A study characterizing silver nanoparticles synthesized using strong, mild, and weak reducing agents with various capping agents. The nanoparticles were analyzed using UV-Visible absorption spectroscopy, dynamic light scattering, atomic force microscopy, and anti-microbial activity tests. The dataset, associated with an open-access paper, likely contains measurements from these characterization techniques.
Use Cases
Modeling nanoparticle stability based on the type of reducing and capping agents used.
Correlating synthesis parameters with particle size measurements from dynamic light scattering.
Predicting anti-microbial activity based on nanoparticle characterization data.
Analyzing spectral data from UV-Visible absorption spectroscopy for different nanoparticle formulations.
Strengths
Characterization includes multiple analytical techniques: UV-Vis, DLS, AFM, and anti-microbial tests.
Systematic comparison of three distinct types of reducing agents and three capping agents.
Limitations
Row count and specific column-level documentation are unknown, which may limit suitability assessment.
Last update date is unknown; freshness unverified.
Data may reflect the specific experimental bias inherent to the single study described.
Provenance
Source
Krutagn Patel via paperswithcode
Collection Method
Experimental synthesis and characterization of silver nanoparticles.
License is listed as Open Access (green), but specific terms should be verified from the source.