Characterization of pure and urea-doped γ-glycine single crystals grown by solution method
暂无分享,去创建一个
[1] C. Mahadevan,et al. Growth, XRD and dielectric properties of triglycine sulpho-phosphate (TGSP) crystals added with magnesium sulfate , 2008 .
[2] C. Krishnan,et al. Growth and studies of pure and potassium iodide-doped zinc tris-thiourea sulphate (ZTS) single crystals , 2008 .
[3] K. Srinivasan. Crystal growth of α and γ glycine polymorphs and their polymorphic phase transformations , 2008 .
[4] J. Prakash,et al. Crystal growth and characterization of a semiorganic nonlinear optical single crystal of gamma glycine , 2008 .
[5] C. Krishnan,et al. Growth and characterization of pure and potassium chloride-doped Zinc Tris–thiourea Sulphate (ZTS) single crystals , 2008 .
[6] P. M. Anbarasan,et al. Growth and characterization of metal ions and dyes doped KDP single crystals for laser applications , 2008 .
[7] G. Bhagavannarayana,et al. Influence of inorganic and organic additives on the crystal growth, properties and crystalline perfection of tris(thiourea)copper(I) chloride (TCC) crystals , 2008 .
[8] P. Dhanaraj,et al. Nucleation studies and characterization of potassium dihydrogen phosphate single crystals with l-arginine monohydrochloride as additive , 2008 .
[9] S. Dinakaran,et al. Studies on optical, mechanical and transport properties of NLO active L-alanine formate single crystal grown by modified Sankaranarayanan Ramasamy (SR) method , 2008 .
[10] K. Ramamurthi,et al. Growth, structural, optical and thermal properties of γ-glycine crystal , 2008 .
[11] N. Vijayan,et al. Synthesis, growth, structural, spectroscopic and optical studies of a new semiorganic nonlinear optical crystal: L-valine hydrochloride. , 2008, Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy.
[12] P. Sagayaraj,et al. Synthesis, growth and characterization of l‐alaninium oxalate ‐ a novel organic NLO crystal , 2007 .
[13] K. Srinivasan,et al. Growth of non-linear optical γ-glycine single crystals and their characterization , 2007 .
[14] K. Baskaran,et al. XRD, thermal, FTIR and SEM studies on gel grown γ‐glycine crystals , 2007 .
[15] S. Goma,et al. Dielectric parameters of KDP single crystals added with urea , 2006 .
[16] P. Sagayaraj,et al. Crystal growth, optical, mechanical and electrical properties of organic NLO material γ‐glycine , 2006 .
[17] A. Jayarama,et al. Hydrogen bonded nonlinear optical γ-glycine : Crystal growth and characterization , 2005 .
[18] J. Baran,et al. Polarised IR and Raman spectra of the γ-glycine single crystal , 2005 .
[19] Robert W. Williams. A scaled quantum mechanical force field and vibrational analysis for the gamma glycine crystal polymorph: Hydrogen bond stretching modes observed , 2004 .
[20] P. Ramasamy,et al. Growth of nonlinear optical material: L-arginine hydrochloride and its characterisation , 2004 .
[21] K. K. Rao,et al. Microhardness studies on as-grown faces of NaClO3 and NaBrO3 crystals , 2002 .
[22] Jiban Podder. The study of impurities effect on the growth and nucleation kinetics of potassium dihydrogen phosphate , 2002 .
[23] S. Dharmaprakash,et al. Growth of nonlinear optical γ-glycine crystals , 2002 .
[24] F. Gnanam,et al. Growth and microhardness studies on NH4Sb2F7 single crystals , 1993 .
[25] P. Kotru,et al. Microhardness of flux grown pure doped and mixed rare earth aluminates and orthochromites , 1989 .
[26] David Eimerl,et al. Deuterated L-arginine phosphate: a new efficient nonlinear crystal , 1988 .
[27] S. Velsko,et al. Synthesis and characterization of chemical analogs of L-arginine phosphate , 1987 .
[28] H. Lipson,et al. Interpretation of X-Ray Powder Diffraction Patterns , 1970 .
[29] S. K. Kurtz,et al. A powder technique for the evaluation of nonlinear optical materials , 1968 .
[30] Y. Iitaka. The crystal structure of γ‐glycine , 1958 .
[31] R. Corey,et al. The Crystal Structure of Glycine , 1939 .