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Języki publikacji
Abstrakty
Single crystal of sodium 4-hydroxybenzenesulfonate dihydrate (Na-4-HBS) was grown from an aqueous solution by slow evaporation method. Powder X-ray diffraction study was carried out to identify the lattice parameters of the crystal. FT-IR spectral analysis confirmed the existence of various functional groups in the compound. The optical transmittance, cut-off wavelength and band gap energy were estimated from the UV-Vis studies. Photoluminescence studies revealed the transition mechanism by optical excitation. The variation of dielectric properties and AC conductivity of the grown crystal with frequency was studied at different temperatures. Measurements of mechanical properties of Na-4-HBS were carried out to find the hardness of the material. The laser induced surface damage threshold and relative second harmonic generation nonlinear optical properties of the grown crystal were studied using Q-switched Nd:YAG laser.
Wydawca
Czasopismo
Rocznik
Tom
Strony
158--165
Opis fizyczny
Bibliogr. 23 poz., rys., tab.
Twórcy
autor
- Presidency College, Department of Physics, Chennai-600005, India
autor
- Arul Anandar College, Department of Physics, Madurai-625514, India
autor
- Women’s Christian College, Post Graduate Department of Physics, Chennai-600006, India
autor
- Women’s Christian College, Post Graduate Department of Physics, Chennai-600006, India
autor
- Arul Anandar College, Department of Physics, Madurai-625514, India
autor
- Presidency College, Department of Physics, Chennai-600005, India
Bibliografia
- [1] JAGANNATHAN K., KALAINATHAN S., GNANASEKARAN T., VIJAYAN N., BHAGAVANNARAYANA G., Cryst. Res. Technol., 42 (2007), 483.
- [2] SCHNEIDER A., BIAGGIO I., GUNTER P., Appl. Phys. Lett., 84 (2004), 2229.
- [3] JOSE M., SRIDHAR B., BHAGAVANNARAYANA G., SUGANDHI K., UTHRAKUMAR R., JUSTINRAJ C., TAMILVENDHAN D., JEROME DAS S., J. Cryst. Growth, 312 (2010), 793.
- [4] MUTHU K., MEENAKASHISUNDARAM S.P., J. Cryst. Growth, 352 (2012), 158.
- [5] GEETHA D., THILAGAVATHI D., Middle-East J. Sci. Res., 4 (3), (2009) 185.
- [6] MYTHILI P., KANAGASEKARAN T., SHARMA N.S., GOPALAKRISHNAN R., J. Cryst. Growth, 306 (2007), 344.
- [7] BRAHADEESWARAN S., VENKATARAMANAN V., SHERWOOD J.N., BHAT H.L., J. Mater. Chem., 8 (3) (1998), 613.
- [8] SELVAKUMAR E., ANANDHA BABU G., RAMASAMY P., CHANDRAMOHAN A., Spectrochim. Acta A, 122 (2014), 436.
- [9] TAFFAREL R.S., RUBIO J., Miner. Eng., 23 (2010), 771.
- [10] MOHD. SHAKIR., KUSHWAHA S.K., MAURYA K.K., ARORA M., BHAGAVANNARAYANA G., J. Cryst. Growth, 311 (2009), 3871.
- [11] ALBERTI G., CONSTANTINO U., ALLULLI S., TOMASSINI N., J. Inorg. Nucl. Chem., 40 (1978), 1113.
- [12] KOSNIC E.J., MC CLYMONT E.L., HODDER R.A., SQUATTRITO P.J., Inorg. Chim. Acta, 201 (1992), 143.
- [13] SILVERSTEIN R.M., WEBSTER F.X., KIEMLE D.J., Spectrometric Identification of Organic Compounds, 7 th Ed., John Wiley and Sons, New York, 2005.
- [14] MARCHEWKA M.K., PIETRASZKO A., Spectrochim Acta A, 69 (2008), 312.
- [15] ZAHID MD. I., KALAIYARASI S., KRISHNA KUMAR M., GANESH T., JAISANKAR V., MOHAN KUMAR R., Mater. Sci.-Poland., 34 (4) (2016), 81.
- [16] KRISHNAKUMAR V., NAGALAKSHMI R., OZGA K., PIASECKI M., KITYK I.V., BRAGIEL P., J. Optoelectron. Adv. M., 11(2) (2009) 123.
- [17] RAO C.N.R., Ultraviolet and Visible Spectroscopy, 3 rd Ed., Butterworths, London, 1975.
- [18] ROSHAN A., JOSEPH S.C., Mater. Lett., 49 (2001), 299.
- [19] KRISHNAKUMAR V., NAGALAKSHMI R., Spectrochim. Acta A, 6 (2005), 499.
- [20] RAI R.N., MUDUNURI S.R., REDDI R.S.B., KUMAR SATULURI V.S.A., GANESHMOORTHY S., GUPTA P.K., J. Cryst. Growth, 321 (2011), 72.
- [21] REICHMAN J., Handbook of Optical Filters for Fluorescence Microscopy, Chroma Technology Corp., USA, 1998.
- [22] RAO K.V., SMAKULA A., J. Appl. Phys., 36 (6) (1965), 2031.
- [23] BHAR G.C., CHAUDHARY A.K.,
Uwagi
PL
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-b96797ee-e5cf-4062-8662-9eec3710ad57