Warianty tytułu
Języki publikacji
Abstrakty
Novel nonlinear optical semi-organic, potassium phthalate di lithium borate (KPDLiB) single crystals were successfully grown by the slow solvent evaporation technique. Good crystalline nature and an orthorhombic structure were confirmed by powder X-ray diffraction and single crystal X-ray diffraction studies. The functional groups of KPDLiB were identified using FT-IR spectrum recorded in the range of 4000 cm-1 to 450 cm-1. UV-Vis spectrum showed transmitting ability of the crystals in the entire visible region. The photoluminescence spectrum exhibited good fluorescence emission in a visible region at 384 nm, 416 nm and 578 nm. The second harmonic generation efficiency of the grown crystal was evaluated from Kurtz powder technique.
Słowa kluczowe
Czasopismo
Rocznik
Tom
Strony
214--218
Opis fizyczny
Bibliogr. 18 poz., tab., rys.
Twórcy
autor
- Raman Research Laboratory, PG & Research Department of Physics, Government Arts College, Tiruvannamalai-606603, Tamilnadu, India
- Department of Environmental Engineering and Management, Chaoyang University of Technology, Taichung 41349, Taiwan
autor
- Raman Research Laboratory, PG & Research Department of Physics, Government Arts College, Tiruvannamalai-606603, Tamilnadu, India, balad67@rediffmail.com
autor
- Raman Research Laboratory, PG & Research Department of Physics, Government Arts College, Tiruvannamalai-606603, Tamilnadu, India
Bibliografia
- [1] ZYSS J. (Ed.), Chem. Phys., (1999), 243.
- [2] KARN A S. P. (Ed.), J. Phys. Chem. A, (2000), 104.
- [3] KANIS D. R., RATNER M.A., MARKS T.S., Chem. Rev. 94 (1994), 195.
- [4] DALAL J., SINHA N., KUMAR B., Opt. Mater., 37 (2014), 457.
- [5] LIU G., LIU J., ZHENG X., LIU Y., YUAN D., ZHANG X., GAO Z., TAO X., CrystEngComm, 17 (2015), 2569.
- [6] IZATT R.M., BRADSHAW J.S., DALLEY N.K., Chem. Rev., 91 (1981), 137.
- [7] GEORGE J., PREMACHANDRAN S.K., J. Phys. D, 14 (1981), 1277.
- [8] SAWYER G.A., BEARDEN A. J., HENINS I., JAHODA F. C., RIBE F. I., Phys. Rev., 131 (1963), 1891.
- [9] MINIEWICZ A., Mol. Cryst. Liq. Cryst., 229 (1993), 13.
- [10] CHEN C.T., WU B.C., JIANG A.D., YOU G.M., Sci. Sin. B 28 (1983), 235.
- [11] CHEN C.T., WU Y.C., JIANG A.D., WU B.C., YOU G.M., LI R.K., J. Op.t Soc. Am. B, 6 (1989), 616.
- [12] TIMPANARO S., SASSELLA A., BARGHESI A.Z., POR W., FONTAINE P., GOLDMANN M., Adv. Matter., 13 (2001), 127.
- [13] CHITHAMBARAM V., JEROME DAS S., ARIVUDAI NAMBI R., KRISHNAN S., Laser Technol., 43 (2011), 1229.
- [14] SIVAKUMAR B., GOKUL RAJ S., RAMESH KUMAR G., MOHAN R., J. Crystall. Proc. Technol., 2 (2012), 130.
- [15] SAJAN D., VIJAYAN N., SAFAKATH K., REJI P., HUBERT JOE I., J Phys Chem A, 115 (2011), 8216.
- [16] SENTHIL PANDIAN M., BALAMURUGAN N., BHAGAVANNARAYANA G., RAMASAMY P., J. Crystal Growth, 310 (2008), 4143.
- [17] ALEKSANDROVSKY A.S., KRYLOV A.S., MALAKHOVSKII A.V., POTSELUYKO A.M., ZAITSEV A.I., ZAMKOV A.V., J. Phys. Chem. Solids, 66 (2005), 75.
- [18] REICHMAN J., Handbook of Optical Filters for Fluorescence Microscopy, Chroma Technology, Brattleboro, 2010.
Typ dokumentu
Bibliografia
Identyfikatory
Identyfikator YADDA
bwmeta1.element.baztech-4a7656f6-68cf-4438-abce-d26ab81bb1af