Summary

Composite materials based on conducting
polymers and metal oxide as well as Carboxylic acid functionalized CNTs or
Carboxylic acid functionalized graphene display an attractive, novel and
enhanced properties which can be easily applied in variable fields of applications.
Nonlinear optics, Molecular electronics, electromagnetic shielding, and
electrochemical display technology have been reported as important area of
applications for such materials. Conducting polymers reinforced by different
loading of metal oxide or Carboxylic acid functionalized CNTs or Carboxylic
acid functionalized graphene display an attractive provide us new hybrid
materials due to the successful consolidation advantages of both organic show
(flexibility, ductility, processibility) and inorganic materials (mechanical
strength, modulus, and thermal stability). Therefore, our main objective in
this proposal is to fabricate new worthy composite materials base on conducting
copolymers and reinforced by metal oxide nanoparticles or Carboxylic acid
functionalized CNTs or Carboxylic acid functionalized graphene using in situ
polymerization method. Prior the fabrication process metal oxide nanoparticles
will be prepared and characterized using normal characterization techniques to
confirm its structure. The fabricated products will be identified and
characterized by common characterization techniques. This will include: X-ray
diffraction analysis (XRD), Fourier transform infrared (FT-IR), magnetic
properties vibration sample magnetometer (VSM) and thermal analyses
(thermogravimetry analysis (TGA), Differential thermogravimetric (DTG),
Differential thermal analysis (DTA) & differential scanning calorimetry
(DSC)). Furthermore, the electrical conductivity will be measured to find out
the impact of such reinforced fillers on the conducting behaviour. More
particularly, the morphological features of these composite materials will be
determined by scanning electron microscopy (SEM) and transmission electron
microscopy (TEM) as well. In addition to that, Fabricate modified electrodes
from these new materials for suitable applications. This application can
support to develop and facilitate the services in the different fields like
industrial, agricultural, health and environmental.

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