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Effect of dicarboxylic acid dopant on ADP crystal by slow evaporation method

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Influence of dicarboxylic acid dopant on growth and characterization of ADP crystal were grown by slow evaporation technique at room temperature. The transparent (ADFU) crystals are yield after a period of 15 days. The X-ray diffraction study reveals that ADFU crystal belongs to tetragonal system. The vibrational modes of grown crystal were confirmed by FTIR spectral analysis. In UV-Vis spectral analysis the absorbance is low than pure ADP which reveals that NLO active of grown crystal is more. The emission spectrum of grown crystal was studied using fluorescence spectral analysis. The nonlinear optical property was analyzed using Kurtz-Perry technique, the SHG effciency of ADFU crystal has much higher than that of pure ADP. The mechanical behavior includes binding nature and strength for the grown crystal was investigated by Vickers microhardness test.
Rocznik
Strony
1261--1271
Opis fizyczny
Bibliogr. 20 poz., 1 il., wykr.
Twórcy
autor
  • Department of Physics, Seethalakshmi Ramaswami College, Trichy-2
autor
  • Department of Physics, Cauvery College for Women,Trichy-18
autor
  • Department of Physics, Seethalakshmi Ramaswami College, Trichy-2
Bibliografia
  • [1] Akhtar, F., Podder, J.: Structural, Optical, Electrical and Thermal Characterizations of Pure and L-alanine Doped Ammonium Dihydrogen Phosphate Crystals, Journal of Crystallization Process and Technology, 1, 18-25, 2011.
  • [2] Ganesh, M.S., Alfaify, S., Sayed, M.: Effect of Ni2+doping on structural, optical, mechanical and dielectric properties of ammonium dihydrogen phosphate (ADP) single crystals: A novel NLO material, Optik - Int. J. Light Electron Opt., 127, 5479-5485, 2016.
  • [3] Senthil, A., Ramasamy, P.: Investigation on the SR method growth, etching, birefringence, laser damage threshold and thermal characterization of strontium bis (hydrogen L-malate) hexahydrate single crystal, Journal of Crystal Growth, 312, 276-281, 2010.
  • [4] Anis, M., Shirsat, M.D., Muley, G., Hussaini, S.S.: Influence of formic acid on electrical, linear and nonlinear optical properties of potassium dihydrogen phosphate (KDP) crystals, Physica B, 449, 61-66, 2014.
  • [5] Anis, M., Muley, G.G., Hakeem, A., Shirsat, M.D., Hussaini, S.S.: Exploring the influence of carboxylic acids on nonlinear optical (NLO) and dielectric properties of KDP crystal for applications of NLO facilitated photonic devices, Optical Materials, 46, 517-521, 2015.
  • [6] Anis, M., Muley, G.G., Baig, M.I., Hussaini, S.S., Shirsat, M.D.: Doping effect of carboxylic acids on optical, electrical, mechanical and thermal traits of KDP crystal, Materials Research Innovations, 1-8, 2016.
  • [7] Anis, M., Hakeem, D.A., Muley, G.G.: Optical and dielectric studies of KH2PO4 crystal influenced by organic ligand of citric acid and L-valine: A single crystal growth and comparative study, Results in Physics, 6, 645-650, 2016.
  • [8] Baig, M.I., Anis, M., Muley, G.G.: Comprehensive study on crystal growth, optical and dielectric properties of potassium dihydrogen orthophosphate crystal influenced by organic additive salicylic acid, Optik, 131, 165-170, 2016.
  • [9] Rajesh, P., Ramasamy, P.: Effect of oxalic acid on the optical, thermal, dielectric and mechanical behaviour of ADP crystal, Physica B, 404, 1611-1616, 2009.
  • [10] Rajesh, P., Ramasamy, P.: Growth of DL-Malic Acid-Doped Ammonium Dihydrogen Phosphate Crystal and Its Characterization, Journal of Crystal Growth, 311, 3491-3497, 2009.
  • [11] Shah, D. and Want, B.: Growth, characterization and dielectric studies of gadolinium fumarate heptahydrate single crystals, Bull Mater Sci., 38, 1-9, 2015.
  • [12] Joshi, J.H., Jogiya, B.V., Joshi, M.J., Parikh, K.D.: Growth and Characterization of L-threonine doped ADP Crystals, International Journal of Chem Tech Research, 6, 1555-1558, 2014.
  • [13] Zion, D., Devarajan, S., Arunachalam, T.: Dielectric and Optical Characterization of Boron Doped Ammonium Dihydrogen Phosphate, Journal of Crystallization Process and Technology 3, 5-11, 2013.
  • [14] Iyanar, M., Prakash, T.J., Muthamizhchelvan, X., Ekadevasena, S., Sam Gnanaraj, J.M. and Shek Dhavud, S.: Growth and Characterization of l-proline Doped ADP Crystals for Optoelectronic Applications, Material Science Research India, 12, 22-27, 2015.
  • [15] Gowri, S., Subashiri, R.D.: Growth, Spectral & Mechanical Behaviour of SCZA - Inorganic Crystal, International Journal of Technical Research and Applications, 69-72, 2016.
  • [16] Ramteke, S.P., Anis, M., Baig, M.I., Pahurkar, V.G., Muley, G.G.: Optical and electrical analysis of Cu2+ ion doped zinc thiourea chloride (ZTC) crystal: An outstanding 30x24x4 mm3 bulk monocrystal grown from pH controlled aqueous solution, Optik, 137, 31-36, 2017.
  • [17] Anis, M., Shuakat, H., Shrisat, M., Muley, G.: Analysis of the X-ray diffraction, etching, luminescence, photoconductivity, thermal and dielectric properties of an ADP crystal influenced by bimetallic additive sodium metasilicate (Na2SiO3), Materials Research Express, 3, 106204-106210, 2016.
  • [18] Delci, Z., Shyamala, D., Karuna, S., Senthil, A., Thayumanavan, A.: Optical, microhardness, thermal, NLO of L-histidine doped ADP crystals, Indian Journal of Pure & Applied Physics, 51, 426-430, 2013.
  • [19] Anis, M. Muley, G.: Single crystal growth and enhancing effect of glycine on characteristic properties of bis thiourea zinc acetate crystal, Physica Scripta, 91, 85801-85808, 2016.
  • [20] Onitsch, E.M.: The present status of testing the hardness of materials, Microscope, 95(1), 1950.
Uwagi
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2019).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-814d3af6-cf84-431b-ba12-b97674ba4f81
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