首页> 外文期刊>Vibrational Spectroscopy: An International Journal devoted to Applications of Infrared and Raman Spectroscopy >Theoretical and experimental investigation of structural and vibrational properties of L-arginine center dot HClxBr1-x monohydrate crystals
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Theoretical and experimental investigation of structural and vibrational properties of L-arginine center dot HClxBr1-x monohydrate crystals

机译:L-精氨酸中心点HCLXBR1-X一水合物晶体结构和振动性能的理论与实验研究

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摘要

In this work, five L-arginine center dot HClxBr1-x center dot H2O single crystals were grown through the slow evaporation method from a mixture of two aqueous solutions of L-arginine hydrochloride monohydrate and L-arginine hydrobromide monohydrate in proportions 0:1, 1:3, 1:1, 3:1, and 1:0, respectively. The crystals were grown by slow evaporation method from aqueous solutions at room temperature (25 degrees C). The grown single crystals were investigated by X-ray fluorescence (XRF) which presented: C6H14N4O2 center dot HCl center dot H2O, C6H14N4O2 center dot HCl0.14Br0.86 center dot H2O, C6H14N4O2 center dot HCl0.42Br0.58 center dot H2O, C6H14N4O2 center dot HCl0.63Br0.37 center dot H2O and C6H14N4O2 center dot HBr center dot H2O. X-ray diffraction (XRD), in association with Rietveld's refinement, showed that all samples crystallized in the monoclinic system, with P21-space group. XRD experiments also evidenced that the unit cell volume of the LAHClxBr1-x crystals decreased as increasing Cl concentration. In addition, structure modeling and vibrational spectra calculations of the LAHCl(x)Br(1-x) (x = 0.0, 0.5 and 1.0) crystals were performed at DFT/LDA level to be correlated with the experimental data. Raman spectroscopy experiments evidenced that bands associated with lattice modes undergo a blueshift as the Cl concentration was increased. This behavior can be explained by decreasing Cl mass as well as contraction of the unit cell towards LAHCl crystal, as observed by XRD data.
机译:在这项工作中,通过缓慢蒸发法从一水L-精氨酸盐酸盐和一水L-精氨酸氢溴酸盐的两种水溶液的混合物中分别以0:1、1:3、1:1、3:1和1:0的比例生长了五个L-精氨酸中心点HClxBr1-x中心点H2O单晶。晶体是在室温(25℃)下从水溶液中缓慢蒸发生长的。用X射线荧光(XRF)对生长的单晶进行了研究,结果表明:C6H14N4O2中心点HCl中心点H2O,C6H14N4O2中心点HCl0。14Br0。86中心点H2O,C6H14N4O2中心点HCl0。42Br0。58中心点H2O,C6H14N4O2中心点HCl0。63Br0。37中心点H2O和C6H14N4O2中心点HBr中心点H2O。X射线衍射(XRD)结合Rietveld的细化表明,所有样品均在单斜晶系中结晶,具有P21空间群。XRD实验还表明,随着Cl浓度的增加,LAHClxBr1-x晶体的晶胞体积减小。此外,在DFT/LDA水平上对LAHCl(x)Br(1-x)(x=0.0、0.5和1.0)晶体进行了结构建模和振动光谱计算,以与实验数据相关联。拉曼光谱实验证明,随着Cl浓度的增加,与晶格模式相关的谱带发生蓝移。这种行为可以通过XRD数据观察到的Cl质量降低以及晶胞向LAHCl晶体收缩来解释。

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