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Green chemistry-assisted synthesis of metal nanoparticle and fabrication of microstructurally engineered conductive and endurable M@PEO Functional Films (dataset)

  • Madhumita Mukhopadhyay (Creator)
  • Anamika Das (Contributor)
  • Raktima Chatterjee (Contributor)
  • Shinjini Sarkar (Contributor)
  • Grishma Ninave (Contributor)
  • Debosreeta Bose (Contributor)
  • Amit Dutta (Contributor)
  • Satarupa Biswas (Contributor)
  • Moumita Mukherjee (Contributor)
  • Ragavendran Venkatesan (Contributor)
  • Rahul Majee (Contributor)
  • Saumya Dasgupta (Contributor)
  • Jayanta Mukhopadhyay (Contributor)

Dataset

Description

The open data set includes experimental and theoretical findings from five characterization techniques.
The article published shows development of Polyethylene oxide based composite film formation using metal nanoparticles. These metal nanoparticles are synthesized using bio herbs like tea and neem leaves.
The data set includes:
1. Thermal characterization (using differential thermal analysis) of the PEO based films. The data is consolidated as EXcell (.csv) file which could be accessed easily using windows/linux processing system
2. X-ray diffraction analysis data reveals the phase formation and purity of PEO-metal based films. The data could be opened using origin software
3. Formation of metal nanoparticles has been studied using UV visible spectroscopy and could be opened using origin software
4. In order to study the interaction of Metal nanoparticles with phytochemicals of each herb type- theoretical study done using DFT. Data could be seen consolidated in orgin file
5. The AC conductivity, dielectric and Nyquist study was up taken using Solatron and could be visible through origin software.
Date made available26 Aug 2025
PublisherUniversity of St Andrews

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