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本文对ZTS晶体生长方法、性能以及掺杂改性等方面取得的研究成果进行了较全面的总结与分析,指出了在优质大尺寸晶体生长、掺杂改性机理、晶体应用开发等方面存在的不足,由此对该晶体未来研究重点提出了建议.

参考文献

[1] Venkataramanan V.;Wadhawan VK.;Sherwood JN.;Bhat HL.;Dhanaraj G. .CRYSTAL GROWTH AND DEFECTS CHARACTERIZATION OF ZINC TRIS (THIOUREA) SULFATE - A NOVEL METALORGANIC NONLINEAR OPTICAL CRYSTAL[J].Journal of Crystal Growth,1995(1/2):92-97.
[2] Arunmozhi G;Gomes ED;Ganesamoorthy S .Growth kinetics of zinc(tris)thiourea sullphate (ZTS) crystals[J].Crystal Research and Technology: Journal of Experimental and Industrial Crystallography,2004(5):408-413.
[3] S. Dinakaran;S. Verma;S. Jerome Das;S. Kar;K. S. Bartwal .Optical imaging of the growth kinetics and polar morphology of zinc tris(thiourea) sulphate single crystals[J].Crystal Research and Technology: Journal of Experimental and Industrial Crystallography,2010(3):233-238.
[4] 石航,李明伟,程旻,潘翠连,吴伟军.硫脲硫酸锌晶体(100)面台阶生长动力学实时研究[J].功能材料,2011(12):2141-2145.
[5] 潘翠连,李明伟,程旻,王永宝,邱言锋.L-丙氨酸掺杂下ZTS晶体(100)面台阶动力学实时研究[J].人工晶体学报,2012(03):588-593,598.
[6] 常新安,臧和贵,陈学安,肖卫强,侯琳,郝秀红.金属有机配合物-硫脲硫酸锌晶体的生长探索[J].人工晶体学报,2007(04):780-783.
[7] Iyanar, M.;Muthamizhchelvan, C.;Prakash, J.T.J.;Inbanathan, S.S.R.;Ponnusamy, S..Uniaxial growth of 〈1 0 0〉 zinc (tris) thiourea sulphate (ZTS) single crystal by Sankaranarayanan-Ramasamy (SR) method and its characterizations[J].Spectrochimica acta, Part A. Molecular and biomolecular spectroscopy,2012:265-270.
[8] 常新安,代美娟,臧和贵,肖卫强,陈学安,华晓晓.ZTS晶体生长及其非线性光学性质研究[J].人工晶体学报,2008(02):403-406.
[9] Oussaid M.;Kemiche M.;Carabatos-Nedelec C.;Becker P. .Low temperature phase transitions in zinc tris (thiourea) sulfate (ZTS) determined by Raman scattering[J].Physica status solidi, B. Basic research,1998(1):103-110.
[10] S. Moitra;S. Bhattacharya;T. Kar;A. Ghosh .Dielectric properties and phase transition of zinc tris(thiourea) sulfate single crystal[J].Physica, B. Condensed Matter,2008(18):3244-3247.
[11] A.M. Abdulwahab .Influence of temperature on the optical properties of zinc tris-thiourea sulfate (ZTS) single crystal[J].Optical materials,2012(2):146-154.
[12] Gupte S.S.;Desai C.F. .Vickers hardness anisotropy and slip system in zinc (tris) thiourea sulphate crystals[J].Crystal Research and Technology: Journal of Experimental and Industrial Crystallography,1999(10):1329-1332.
[13] Ramajothi J;Dhanuskodi S;Nagarajan K .Crystal growth, thermal, optical and microhardness studies of tris (thiourea) zinc sulphate - a semiorganic NLO material[J].Crystal Research and Technology: Journal of Experimental and Industrial Crystallography,2004(5):414-420.
[14] Ariponnammal S;Radhika S;Vennila RS;Jeya NV .High pressure electrical resistivity study on nonlinear single crystal zinc thiourea sulphate (ZTS)[J].Crystal Research and Technology: Journal of Experimental and Industrial Crystallography,2005(8):786-788.
[15] Meenakshisundaram S;Parthiban S;Sarathi N;Kalavathy R;Bhagavannarayana G .Effect of organic dopants on ZTS single crystals[J].Journal of Crystal Growth,2006(2):376-381.
[16] Sweta Moitra;Tanusree Kar .Growth and characterization of nonlinear optical crystal zinc tris (thiourea) sulphate in presence of L-arginine[J].Optical materials,2007(3):508-512.
[17] 王永宝,李明伟,程旻,潘翠连,宋洁.L-精氨酸掺杂下ZTS溶液的稳定性研究[J].人工晶体学报,2011(06):1460-1466.
[18] Krishnan, C;Selvarajan, P;Freeda, TH;Mahadevan, CK .Growth and characterization of pure and potassium iodide-doped zinc tris-thiourea sulphate (ZTS) single crystals[J].Physica. B, Condensed Matter,2009(2):289-294.
[19] M. Selvapandiyan;S. Sudhakar;P. Sundaramoorthi.Crystal growth, structural, spectral and mechanical studies of pure and KI doped ZTS single crystals[J].Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics,2012:25-29.
[20] M. Selvapandiyan;J. Arumugam;P. Sundaramoorthi.Influence of MgSO_4 doping on the properties of zinc tris-thiourea sulphate (ZTS) single crystals[J].Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics,2013:270-275.
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