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2篇 您的检索式:作者名="L.P.Purohit"
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1Structural,Transport and Optical Properties of Boron-doped Zinc Oxide Nanocrystalline显示文摘The paper has reported the structural,transport and optical properties of boron doped zinc oxide(ZnO:B) thin films grown on glass substrate by sol-gel spin coating process.It is observed from the analysis of the X-ray diffraction(XRD) results that the crystalline quality of the films is improved with increasing B concentration.A crystallite size of ~17 nm is obtained for B doped films.A minimum resistivity of 7.9×10-4 Ω.cm is obtained at 0.6 at.% of B concentration in the ZnO:B films.Ionized and intragrain cluster scattering are found to dominate the scattering mechanism in ZnO:B films.Optical interference pattern in transmittance spectra shows good homogeneity with a transparency of ~88% in the visible region.The band gap of the films is increased from 3.24 to 3.35 eV with increasing B concentration.Band gap widening is analyzed in terms of Burstein-Moss shift.The origin of the broad band photoluminescence(PL) spectra is explained in terms of the intragrain cluster scattering.Vinod Kumar R.G.Singh L.P.Purohit R.M.Mehra 2011Journal of Materials Science & Technology2011,27,6:4
2Enhanced electromagnetic absorption in ferrite and tantalum pentoxide based polypyrrole nanocomposite显示文摘The electromagnetic interference(EMI) shielding properties of polypyrrole/barium ferrite/tantalum pentoxide nanocomposite were studied in the X-band frequency range from 8.2 GHz to 12.4 GHz. The nanocomposites were chemically synthesized at room temperature and then characterized by various techniques. The dielectric material parameters were calculated based on the experimental scattering parameters using Nicholson–Ross and Weir algorithms. The synthesized nanocomposites demonstrated that the shielding effectiveness up to 50 dB depended upon the dielectric loss and weight fraction of ferrite and Ta2O5 in the polymer matrix.Preeti Gairola L.P.Purohit S.P.Gairola Preetam Bhardwaj Shivani Kaushik 2019Progress in Natural Science:Materials International2019,29,2:0
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