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Growth, characterization and SHG studies of Cu (Ⅱ) doped manganese sulfate monohydrate crystals

机译:Cu(Ⅱ)掺杂锰硫酸盐一水合物晶体的生长,表征和SHG研究

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摘要

Copper incorporated manganese sulfate single crystals have been grown by a conventional slow evaporation solution technique using water as solvent. The crystal size improves noticeably with increasing Cu (Ⅱ) sulfate with decrease in optical transparency. The atomic absorption spectroscopy of grown crystals conform the presence of copper and increase in its concentration after successive increase after incorporation. The phase identification exercised for all grown crystals using single crystal x-ray diffraction shows the crystallization in orthorhombic phase with almost same lattice parameters. The study of optical transmission of grown crystals carried out using UV-visible spectrophotometer shows anomalous behavior above 400. However, the transmission behavior was almost stable for 10 mol% copper (Ⅱ) sulfate incorporated manganese sulfate ranging between 30 and 40% compared to other two crystals. The presence of functional groups and variations in peak position especially of O-H and sulfonate stretching was determined using FT-IR spectroscopy. The amount of water released and increase in decomposition temperature as a function Cu (Ⅱ) sulfate incorporation was conformed using TGA/DSC respectively. The micro-hardness test of grown crystals using Vickers diamond pyramid indenter shows improved hardness as a function of Cu (Ⅱ) sulfate incorporation. The second harmonic generation study shows decrease in relative conversion efficiency with increase in Cu (Ⅱ) sulfate incorporation in crystals.
机译:使用作为溶剂的常规缓慢蒸发溶液技术已经生长了铜掺入的锰硫酸锰单晶。随着Cu(Ⅱ)硫酸盐随着光学透明度的降低而显着改善了晶体尺寸。生长晶体的原子吸收光谱符合铜的存在,并在掺入后连续增加后浓度增加。使用单晶X射线衍射的所有生长晶体锻炼的相位鉴定表明,具有几乎相同的晶格参数的正交相中的结晶。使用UV可见分光光度计进行的生长晶体的光学传递显示出高于400的异常行为。然而,与其他相比,10mol%铜(Ⅱ)硫酸盐的硫酸盐掺入硫酸锰几乎稳定的变速器行为几乎是稳定的两个水晶。使用FT-IR光谱法测定官能团的存在和尤其是O-H和磺酸盐拉伸的峰位置的变化。用TGA / DSC符合TGA / DSC,释放和分解温度增加的水量和分解温度的增加。使用Vickers金刚石金字塔压纳米的生长晶体的微硬度试验表现出改善的硬度作为Cu(Ⅱ)硫酸盐掺入的函数。第二次谐波生成研究表明,相对转化效率的降低随晶体中的Cu(Ⅱ)硫酸盐掺入。

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