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Poly Methyl Methacrylate (Pmma) Based Polyaniline Composite for Ammonia (Nh3) Gas Sensors
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Inorganic acids (HCl, H2SO4, and H3PO4) doped-PMMA/PANI composites are prepared by in-situ technique via oxidation-polymerization process. Different techniques such as XRD, FTIR, UV-Visible, four-probe method are used to characterize the composite. Presence of different chemical group of the doped composites is analysed by ATR-FTIR spectroscopic analysis. Charge carrier behaviour of the doped composite is analyzed by UV-Visible spectroscopy. Band gap (Eg) of the doped composites is determined from UV-Visible absorption analysis using Tauc expression. The estimated direct band gap energy (Eg) is found to be 1.93 eV (for HCl doped PMMA/PANI composite), 1.19 eV (for H2SO4 doped PMMA/PANI composite), and 1.71 eV (for H3PO4 doped PMMA/PANI composite), respectively. DC-conductivity is measured with and without magnetic field. Temperature dependent DC conductivity is also measured. In addition, we were discussed the response of ammonia (NH3) gas with polyaniline-based sensor materials.
Title: Poly Methyl Methacrylate (Pmma) Based Polyaniline Composite for Ammonia (Nh3) Gas Sensors
Description:
Inorganic acids (HCl, H2SO4, and H3PO4) doped-PMMA/PANI composites are prepared by in-situ technique via oxidation-polymerization process.
Different techniques such as XRD, FTIR, UV-Visible, four-probe method are used to characterize the composite.
Presence of different chemical group of the doped composites is analysed by ATR-FTIR spectroscopic analysis.
Charge carrier behaviour of the doped composite is analyzed by UV-Visible spectroscopy.
Band gap (Eg) of the doped composites is determined from UV-Visible absorption analysis using Tauc expression.
The estimated direct band gap energy (Eg) is found to be 1.
93 eV (for HCl doped PMMA/PANI composite), 1.
19 eV (for H2SO4 doped PMMA/PANI composite), and 1.
71 eV (for H3PO4 doped PMMA/PANI composite), respectively.
DC-conductivity is measured with and without magnetic field.
Temperature dependent DC conductivity is also measured.
In addition, we were discussed the response of ammonia (NH3) gas with polyaniline-based sensor materials.
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