Kamakshi Patel
Sardar Patel University
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Featured researches published by Kamakshi Patel.
Bulletin of Materials Science | 2015
M. P. Deshpande; Pallavi Sakariya; Sandip V. Bhatt; Nikita H. Patel; Kamakshi Patel; Sunil H. Chaki
Bi2S3 single crystals were grown by the chemical vapour transport technique using ammonium chloride (NH4Cl) as a transporting agent. The stoichiometry of Bi2S3 single crystal was confirmed by energy-dispersive analysis of X-rays (EDAX). The powder X-ray diffraction (XRD) pattern showed that Bi2S3 crystals belong to the orthorhombic phase with calculated lattice constant a = 11.14 Å, b = 11.30 Å and c = 3.96 Å. Scanning electron microscopy (SEM) pictures indicate the presence of layer lines on the surface of crystals thereby proving that these crystals are grown by layer by layer mechanism. We studied the transport properties viz. Hall effect, resistivity, thermoelectric power and thermal conductivity on Bi2S3 pellets. Raman spectroscopy and thermal gravimetric analysis (TGA) were carried out on Bi2S3 single crystal for studying their optical and thermal behaviours.
INTERNATIONAL CONFERENCE ON CONDENSED MATTER AND APPLIED PHYSICS (ICC 2015): Proceeding of International Conference on Condensed Matter and Applied Physics | 2016
M. P. Deshpande; Kamakshi Patel; Vivek P. Gujarati; Sunil H. Chaki
ZnS nanoparticles co-doped with different concentration (5,10,15%) of Mn were synthesized using polyvinylpyrrolidone (PVP) as a capping agent under microwave irradiation. We confirmed doping of Mn in the host ZnS by EDAX whereas powder X-ray diffractogram showed the cubic zinc blende structure of all these samples. TEM images did showed agglomeration of particles and SAED pattern obtained indicated polycrystalline nature. From SAED pattern we calculated lattice parameter of the samples which have close resemblance from that obtained from XRD pattern. The band gap values of pure and doped ZnS nanoparticles were calculated from UV-Visible absorption spectra. ZnS itself is a luminescence material but when we dope it with transition metal ion such as Mn, Co, and Cu they exhibits strong and intense luminescence in the particular region. The photoluminescence spectra of pure ZnS nanoparticles showed an emission at 421 and 485nm which is blue emission which was originated from the defect sites of ZnS itself and ...
INTERNATIONAL CONFERENCE ON CONDENSED MATTER AND APPLIED PHYSICS (ICC 2015): Proceeding of International Conference on Condensed Matter and Applied Physics | 2016
Vivek P. Gujarati; M. P. Deshpande; Kamakshi Patel; Sunil H. Chaki
Semi-organic crystals of Glycine Potassium Nitrate (GPN) with potential applications in Non linear optics (NLO) were grown using slow evaporation technique. Glycine and Potassium Nitrate were taken in three different concentration ratios of 3:1, 2:1 and 1:1 respectively. We checked the solubility of the material in distilled water at different temperatures and could observe the growth of crystals in 7 weeks time. Purity of the grown crystals was confirmed by Energy Dispersive X-ray Analysis (EDAX) and CHN analysis. GSN Powder X-ray diffraction pattern was recorded to confirm the crystalline nature. To confirm the applications of grown crystals in opto-electronics field, UV-Vis-NIR study was carried out. Dielectric properties of the samples were studied in between the frequency range 1Hz to 100 KHz.
Materials Science in Semiconductor Processing | 2014
M. P. Deshpande; Pallavi Sakariya; Sandip V. Bhatt; Nitya Garg; Kamakshi Patel; Sunil H. Chaki
Advanced Materials Letters | 2014
Nikita H. Patel; M. P. Deshpande; Sandip V. Bhatt; Kamakshi Patel; Sunil H. Chaki
Advanced Materials Research | 2016
M. P. Deshpande; Kiran N. Patel; Vivek P. Gujarati; Kamakshi Patel; Sunil H. Chaki
Journal of Materials Science: Materials in Electronics | 2017
Kamakshi Patel; M. P. Deshpande; Sunil H. Chaki
Applied Physics A | 2017
Kamakshi Patel; M. P. Deshpande; Sunil H. Chaki
Advanced Materials Research | 2016
Kamakshi Patel; M. P. Deshpande; Vivek P. Gujarati; Sunil H. Chaki
Advanced Materials Research | 2016
Vivek P. Gujarati; M. P. Deshpande; Kamakshi Patel; Kiran N. Patel; Sunil H. Chaki