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Research Article

Growth and optical studies of tris (thiourea) potassium barium sulphate crystal: a novel semiorganic NLO bimetallic crystal

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Pages 123-128 | Received 22 Aug 2017, Accepted 10 Oct 2017, Published online: 26 Oct 2017

References

  • Succaw GL, Weakley TJR, Han F, et al. Crystal engineering with bis(thiourea) derivatives. Cryst Growth Des. 2005;5:2288–2298.10.1021/cg050162c
  • Luc J, Niziol J, Śniechowski M, et al. Study of nonlinear optical and structural properties of organometallic complexes. Mol Cryst Liq Cryst. 2008;485:990–1001.10.1080/15421400801926099
  • Kessentini Y, Ahmed AB, Al-Juaid SS, et al. Synthesis and non linear optical properties of new inorganic-organic hybrid material: 4-Benzylpiperidinium sulfate monohydrate. Opt Mater. 2016;53:101–108.10.1016/j.optmat.2016.01.035
  • Cai Z-B, Liu L-F, Zhou M. Synthesis of nickel(II) complexes containing modified phenanthroline ligands for potential nonlinear optical applications. Opt Mater. 2013;35:1481–1486.10.1016/j.optmat.2013.03.009
  • Alen S, Sajan D, Vijayan N, et al. Growth, electronic absorption and vibrational spectral analysis of semiorganic nonlinear optical material potassium acid phthalate: a scaled quantum mechanical force field study. J Mol Struct. 1040;2013:155–163.
  • Huang H, Yao W, He Y, et al. Semiorganic nonlinear optical material: crystal growth, structure and optical properties of NaB(L-C4H4O5)2. Mater Res Bull. 2013;48:3077–3081.10.1016/j.materresbull.2013.04.062
  • Sivakumar N, Kanagathara N, Varghese B, et al. Structure, crystal growth, optical and mechanical studies of poly bis (thiourea) silver (I) nitrate single crystal: a new semi organic NLO material. Spectrochem Acta A. 2014;118:603–613.10.1016/j.saa.2013.09.010
  • Caroline ML, Vasudevan S. Growth and characterization of bis thiourea cadmium iodide: a semiorganic single crystal. Mater Chem Phys. 2009;113:670–674.10.1016/j.matchemphys.2008.08.030
  • Sivanandan T, Kalainathan S. Study on third order nonlinear optical properties of a metal organic complex-Monothiourea-cadmium Sulphate Dihydrate single crystals grown in silica gel. J Cryst Growth. 2015;415:25–30.10.1016/j.jcrysgro.2014.12.033
  • Ganesh V, Shkir M, Husain R, et al. Investigation on mechanical properties of some thiourea complex crystals: important nonlinear optical materials. Optik. 2013;124:6690–6695.10.1016/j.ijleo.2013.05.087
  • Song J, Li M, Cheng M, et al. In situ studies of the spiral growth of zinc thiourea sulphate crystals with ethylene diamine tetraacetic acid doped by atomic force microscopy. Cryst Res Technol. 2014;49:743–752.10.1002/crat.201400107
  • Ganesh V, Reddy CS, Shakir M, et al. Comparative study on BIS thiourea cadmium acetate crystals using HRXRD, etching, microhardness, UV–visible and dielectric characterizations. Phys B. 2011;406:259–264.10.1016/j.physb.2010.10.061
  • Yang JT, Luo SJ, Yi L, et al. Mechanism of linear and nonlinear optical properties of bis-thiourea cadmium chloride single crystal. Phys B. 2013;408:175–182.10.1016/j.physb.2012.09.041
  • Marcy HO, Warren LF, Webb MS, et al. Second-harmonic generation in zinc tris(thiourea) sulfate. Appl Opt. 1992;31:5051–5060.10.1364/AO.31.005051
  • Anis M, Hussaini SS, Hakeem A, et al. Synthesis, growth and optical studies of novel organometallic NLO crystal: calcium bis-thiourea chloride. Optik. 2016;127:2137–2142.
  • Selvaraju K, Valluvan R, Kumararaman S. Growth and characterization of a new metal-organic crystal: Potassium thiourea iodide. Mater Lett. 2006;60:3130–3132.
  • Girisun TCS, Dhanuskodi S, Mangalaraj D, et al. Synthesis, growth and characterization of bisthiourea zinc bromide for optical limiting applications. Curr Appl Phys. 2011;11:838–843.
  • Singh P, Hasmuddin M, Abdullah MM, et al. Observation of crystallization and characterizations on thiourea cadmium iodide: a semi-organic optical material. Mater Res Bull. 2013;48:3926–3933.10.1016/j.materresbull.2013.06.005
  • Kannan V, Rajesh NP, Bairava R, et al. Growth and characterization of bis thiourea-zinc acetate, a new nonlinear optical material. J Cryst Growth. 2004;269:565–569.10.1016/j.jcrysgro.2004.05.051
  • Venkataramanan V, Bhat HL, Srinivasan MR, et al. Vibrational spectroscopic study of the semiorganic nonlinear optical crystal bis (thiourea) cadmium chloride. J Raman Spectroscop. 1997;28:779–784.
  • Kumari MM, Ramachandra MPI, Ravikumar C, et al. Charge transfer interaction and nonlinear optical properties of barium chloride and thiourea complexes: a vibrational spectroscopic study. J Raman Spectroscop. 2011;42:1462–1469.
  • Ambujam K, Thomas PC, Aruna S, et al. Growth and characterization of dichloro tetrakis thiourea nickel single crystals. Cryst Res Technol. 2006;41:1082–1088.10.1002/(ISSN)1521-4079
  • Ushasree PM, Jayavel R, Ramasamy P. Influence of pH on the characteristics of zinc tris (thiourea) sulfate (ZTS) single crystals. Mater Chem Phys. 1999;61:270–274.10.1016/S0254-0584(99)00150-9
  • Pasupathi G, Philominathan P. Crystal growth, thermal, optical and microhardness studies of tris (thiourea) magnesium sulphate: a semiorganic nlo material. Mod Phys Lett B. 2009;23:3035–3043.10.1142/S0217984909021107
  • Hajiyani R, Chauhan CK, Jethva HO, et al. Optical and dielectric study of bis (thiourea) nickel barium chloride single crystals. J Mater Sci Eng. 2015. DOI:10.4172/2169-0022.C1.029
  • Anis M, Ramteke SP, Shirsat MD, et al. Novel report on γ-glycine crystal yielding high second harmonic generation efficiency. Opt Mater. 2017;72:590–595.
  • Sun ZH, Xu D, Wang XQ, et al. Growth and characterization of the nonlinear optical single crystal: l-lysinium trifluoroacetate. Mater Res Bull. 2009;44:925–930.10.1016/j.materresbull.2008.08.011
  • Kakani SL, Kakani, A. Materials science. New Delhi: New Age International; 2004; p. 417–419.
  • Shaikh RN, Anis M, Shirsat MD, et al. A study on optical, dielectric and NLO properties of L-Alanine added ammonium dihydrogen phosphate single crystal. J Optoelectron Adv Mater. 2014;16:1147–1152.
  • Weber MJ. Handbook of optical materials. New York (NY): CRC Press; 2003.
  • Anis M, Pandian MS, MI Baig, et al. Monocrystal growth and characterization study of α- and γ-polymorph of glycine to explore superior performance of γ-glycine crystal. Mater Res. 2017. DOI:10.1080/14328917.2017.1329992
  • Ramteke SP, Anis M, Baig MI, et al. Optical and electrical analysis of Cu2+ ion doped zinc thiourea chloride (ZTC) crystal: an outstanding 30 × 24 × 04 mm3 bulk monocrystal grown from pH controlled aqueous solution. Optik. 2017;137:31–36.10.1016/j.ijleo.2017.02.096
  • Priakumari RO, Sahaya Sheba SG, Gunasekaran M. Growth and characterisation of l-lysine hydrochlorobromide (LYHCBr), a novel semiorganic non-linear optical (NLO) single crystal. Mater Res. 2016;20:177–181.
  • Anis M, Muley GG, Pahurkar VG, et al. Influence of Nd3+ on zinc tris-thiourea sulphate single crystal: a comparative crystal growth, structural, linear-nonlinear optical and dielectric study to explore NLO device applications. Mater Res. 2016. DOI:10.1080/14328917.2016.1264848
  • Pandian MS, Ramasamy P. Conventional slow evaporation and Sankaranarayanan-Ramasamy (SR) method grown diglycine zinc chloride (DGZC) single crystal and its comparative study. J Cryst Growth. 2010;312:413–419.10.1016/j.jcrysgro.2009.11.011
  • Anis M, Muley GG, Baig MI, et al. Doping effect of carboxylic acids on optical, electrical, mechanical and thermal traits of KDP crystal. Mater Res Innov. 2017;21:439–446.
  • Kurtz SK, Perry TT. A powder technique for the evaluation of nonlinear optical materials. J Appl Phys. 1968;39:3698–3813.
  • Pir H, Günay N, Avcı D, et al. Quantum chemical computational studies on bis thiourea zinc chloride. Indian J Phys. 2012;86:1049–1063.10.1007/s12648-012-0171-6
  • Pahurkar VG, Anis M, Baig MI, et al. Synchronized effect of Ca2+ ion doping concentration on structural, UV–vis and second harmonic generation efficiency of zinc thiourea chloride (ZTC) crystal: an interesting comparative study. Optik. 2017;142:421–425.10.1016/j.ijleo.2017.06.023
  • Bahae MS, Said AA, Wei T-H, et al. Sensitive measurement of optical nonlinearities using a single beam. IEEE J Quant Electron. 1990;26:760–769.
  • Wang XQ, Ren Q, Sun J, et al. Preparation, physicochemical and third order nonlinear optical properties of bis(tetrabutylammonium)bis(2-thioxo-1,3-dithiole-4,5-dithiolato)mercurate(II). Cryst Res Technol. 2009;44:657–668.10.1002/crat.v44:6
  • Anis M, Muley GG. Bulk growth of undoped and Nd3+ doped zinc thiourea chloride (ZTC) monocrystal: exploring the remarkably enhanced structural, optical, electrical and mechanical performance of Nd3+ doped ZTC crystal for NLO device applications. Opt Laser Technol. 2017;90:190–196.
  • Bing Gu, Wang H-T, Ji W. Z-scan technique for investigation of the noninstantaneous optical Kerr nonlinearity. Opt Lett. 2009;34:2769–2771.
  • Major A, Aitchison JS, Smith PWE, et al. Z-scan measurements of the nonlinear refractive indices of novel Yb-doped laser crystal host. Appl Phys B. 2005;80:199–201.10.1007/s00340-004-1703-3
  • Jin LT, Wang XQ, Ren Q, et al. Preparation, characterization and third order nonlinear optical properties of the bis(tetrabutylammonium)-[Cd(dmit)2] (dmit¼2-thioxo-1, 3-dithiol-4,5-dithiolate) for all-optical switching applications at blue-green light band. J Cryst Growth. 2012;356:10–16.10.1016/j.jcrysgro.2012.07.005
  • Azhar SM, Anis M, Hussaini SS, et al. Dielectric, etching and Z-scan studies of glycine doped potassium thiourea chloride crystal. Mater Sci Poland. 2016;34:800–805.
  • Zhang Y-D, Zhao Z-Y, Yao C-B, et al. The nonlinear absorption and optical limiting in phenoxy-phthalocyanines liquid in nano- and femto-second regime: experimental studies. Opt Laser Technol. 2014;58:207–214.10.1016/j.optlastec.2013.11.022
  • Baig MI, Anis M, Kalainathan S, et al. Laser induced optical and microscopic studies of salicylic acid influenced KH2PO4 crystal for photonic device applications. Mater Technol Adv Perform Mater. 2017;32:560–568.
  • Baig MI, Anis M, Muley GG. Influence of tartaric acid on linear-nonlinear optical and electrical properties of KH2PO4 crystal. Opt Mater. 2017;72:1–7.10.1016/j.optmat.2017.05.042
  • Hu YL, Li TB. Crystal structure and two-photon absorption properties study of a new zinc complex constructed by DMIT ligand. Mater Chem Phys. 2014;147:75–78.10.1016/j.matchemphys.2014.04.008
  • Li TB, Hu YL, Ma CL, et al. Crystal structure and the role of cation group factor in the third-order nonlinear optical properties of cadmium complexes constructed by 1,3-dithiole-2-thione-4,5-dithiolato ligand. Appl Organometal Chem. 2011;25:867–870.10.1002/aoc.v25.12
  • Vivek P, Roop Kumar R, Murugakoothan P. Synthesis, growth, optimization, bulk SR method growth, fabrication of indigenous optical element and anisotropic studies on guanidinium L-monohydrogen tartrate (GuHT) single crystal for nonlinear optical device applications. J Cryst Growth. 2015;412:40–48.10.1016/j.jcrysgro.2014.11.042
  • Russel Raj K, Murugakoothan P. Growth and physical properties of a new crystal for NLO applications: bisguanidinium hydrogen phosphate monohydrate (G2HP). J Cryst Growth. 2013;362:130–134.10.1016/j.jcrysgro.2012.01.006
  • Anis M, Hussaini SS, Shirsat MD. A systematic study on electrical and physical properties of calcium bis-thiourea chloride crystal. Optik. 2016;127:9734–9737.10.1016/j.ijleo.2016.07.065
  • Ramteke SP, Anis M, Pandian MS, et al.Nonlinear optical and microscopic analysis of Cu2+ doped zinc thiourea chloride (ZTC) monocrystal. Opt Laser Technol. 2018;99:197–202

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