Single crystals of γ-glycine, an organic nonlinear optical material were grown by low temperature solution growth methods from aqueous solutions of glycine and ammonium sulfate. Powder X-ray diffraction of the grown crystal was recorded and indexed. The γ-phase of glycine is confirmed by powder XRD and FTIR spectroscopy.CHN analysis shows the non-existence of ammonium sulfate species in the grown γ-glycine single crystals .Optical transmittance spectrum was recorded in the range from 200 to 1100nm.Thermal properties of the grown crystal have been investigated using differential thermal analysis. The NLO property of the crystal was confirmed by Kurtz and Perry technique
Single crystals of a new semi-organic nonlinear optical material glycine hydrobromide were grown fro...
Nonlinear optical amino acid single crystals of pure glycine and glycinium oxalate crystals were suc...
The Single crystals of Glycine Sodium Nitrate (GSN) with very high degree of transparency were grown...
AbstractSingle crystals of an organic nonlinear optical material γ-glycine have been synthesized by ...
AbstractSingle crystals of an organic nonlinear optical material γ-glycine have been synthesized by ...
International audienceIn this research paper, an overview of polymorph γ-form glycine single crystal...
In this research paper, an overview of polymorph γ-form glycine single crystal crystallization in th...
Single crystals of γ-glycine, an organic nonlinear optical material have been synthesized in the pre...
ABSTRACT: Single crystals of organic nonlinear gamma glycine have been successfully synthesized by t...
Single crystals of the nonlinear material gamma-glycine have been grown in the presence of lithium n...
AbstractSemi-organic single crystals of glycine zinc chloride (GZC) have been grown by slow evaporat...
Single crystals of gamma glycine, an organic nonlinear optical material were grown by slow evaporati...
Gamma glycine crystals using rubidium chloride as an additive (GGRC) were grown at room temperature ...
In the present study, single crystals of gamma-glycine possessing excellent non-linear optical prope...
Glycolylurea an intriguing organic material for frequency conversion has been grown by slow evaporat...
Single crystals of a new semi-organic nonlinear optical material glycine hydrobromide were grown fro...
Nonlinear optical amino acid single crystals of pure glycine and glycinium oxalate crystals were suc...
The Single crystals of Glycine Sodium Nitrate (GSN) with very high degree of transparency were grown...
AbstractSingle crystals of an organic nonlinear optical material γ-glycine have been synthesized by ...
AbstractSingle crystals of an organic nonlinear optical material γ-glycine have been synthesized by ...
International audienceIn this research paper, an overview of polymorph γ-form glycine single crystal...
In this research paper, an overview of polymorph γ-form glycine single crystal crystallization in th...
Single crystals of γ-glycine, an organic nonlinear optical material have been synthesized in the pre...
ABSTRACT: Single crystals of organic nonlinear gamma glycine have been successfully synthesized by t...
Single crystals of the nonlinear material gamma-glycine have been grown in the presence of lithium n...
AbstractSemi-organic single crystals of glycine zinc chloride (GZC) have been grown by slow evaporat...
Single crystals of gamma glycine, an organic nonlinear optical material were grown by slow evaporati...
Gamma glycine crystals using rubidium chloride as an additive (GGRC) were grown at room temperature ...
In the present study, single crystals of gamma-glycine possessing excellent non-linear optical prope...
Glycolylurea an intriguing organic material for frequency conversion has been grown by slow evaporat...
Single crystals of a new semi-organic nonlinear optical material glycine hydrobromide were grown fro...
Nonlinear optical amino acid single crystals of pure glycine and glycinium oxalate crystals were suc...
The Single crystals of Glycine Sodium Nitrate (GSN) with very high degree of transparency were grown...