Browsing by Subject Chemical synthesis

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  • Magnetic-behavior-and-Raman-spectroscopy-of-t_2018_Journal-of-Science--Advan.pdf.jpg
  • Article


  • Authors: Datta, S.; Mahapatra, A.S.; Sett, P.; Ghosh, M.; Mallick, P.K.; Chakrabarti, P.K. (2018)

  • The metaleligand nanocomposite system of CuCl2-2-benzoyl pyridine (C12H9NO) was prepared by a chemical route and its crystallographic phase has been confirmed by analyzing the X-ray diffractograms. The strain was developed in the composite due to the lattice mismatch of the two constituting com-ponents. The composite exhibits a paramagnetic behavior in the temperature range of 14e300 K with an effective magnetic moment of about 1.923mB. This is attributed to the incomplete quenching of the orbital angular momentum. Room temperature Raman spectra of the composite and the individual components, CuCl2.2H2O and 2-BOP have been analyzed along with their respective FTIR spectra. These compa...

Browsing by Subject Chemical synthesis

Jump to: 0-9 A B C D E F G H I J K L M N O P Q R S T U V W X Y Z
or enter first few letters:  
Showing results 1 to 1 of 1
  • Magnetic-behavior-and-Raman-spectroscopy-of-t_2018_Journal-of-Science--Advan.pdf.jpg
  • Article


  • Authors: Datta, S.; Mahapatra, A.S.; Sett, P.; Ghosh, M.; Mallick, P.K.; Chakrabarti, P.K. (2018)

  • The metaleligand nanocomposite system of CuCl2-2-benzoyl pyridine (C12H9NO) was prepared by a chemical route and its crystallographic phase has been confirmed by analyzing the X-ray diffractograms. The strain was developed in the composite due to the lattice mismatch of the two constituting com-ponents. The composite exhibits a paramagnetic behavior in the temperature range of 14e300 K with an effective magnetic moment of about 1.923mB. This is attributed to the incomplete quenching of the orbital angular momentum. Room temperature Raman spectra of the composite and the individual components, CuCl2.2H2O and 2-BOP have been analyzed along with their respective FTIR spectra. These compa...