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首页> 外文期刊>Science Journal of Analytical Chemistry >Characterization of Physical, Thermal and Spectral Properties of Biofield Treated 2-Aminopyridine
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Characterization of Physical, Thermal and Spectral Properties of Biofield Treated 2-Aminopyridine

机译:生物场处理过的2-氨基吡啶的物理,热和光谱性质的表征

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2-Aminopyridine is an important compound, which is used as intermediate for the synthesis of pharmaceutical compounds. The present work was aimed to assess the effect of Mr. Trivedi’s biofield energy treatment on the physical, thermal and spectral characteristics of 2-AP. The work was accomplished by dividing the sample in two parts ii.e./i one part was remained untreated, and another part had received biofield energy treatment. Subsequently, the samples were analyzed using various characterization techniques such as X-ray diffraction, differential scanning calorimetry, thermogravimetric analysis, ultra violet-visible spectroscopy, and Fourier transform infrared spectroscopy. The XRD analysis revealed a decrease in crystallite size of the treated sample (91.80 nm) as compared to the control sample (97.99 nm). Additionally, the result showed an increase in Bragg’s angle (2θ) of the treated sample as compared to the control. The DSC and Differential thermal analysis analysis showed an increase in melting temperature of the treated 2-AP with respect to the control. Moreover, the latent heat of fusion of the treated sample was increased by 3.08%. The TGA analysis showed an increase in onset of thermal degradation (Tsubonset/sub), and maximum thermal decomposition temperature (Tsubmax/sub) of the treated 2-AP as compared to the control sample. Additionally, the treated sample showed a reduction in weight loss as compared with the control indicating higher thermal stability of the sample. UV-visible analysis showed no changes in the absorption peak of the treated sample as compared to the control. The FT-IR spectroscopic results showed downward shifting of C-H stretching vibration 2991→2955 cmsup-1/sup in treated sample with respect to the control.
机译:2-氨基吡啶是一种重要的化合物,用作合成药物化合物的中间体。目前的工作旨在评估Trivedi先生的生物场能量处理对2-AP的物理,热和光谱特性的影响。通过将样品分为两部分来完成这项工作,即,一部分未经处理,另一部分经过了生物场能量处理。随后,使用各种表征技术(例如X射线衍射,差示扫描量热法,热重分析,紫外可见光谱和傅立叶变换红外光谱)对样品进行分析。 XRD分析显示,与对照样品(97.99nm)相比,经处理样品(91.80nm)的微晶尺寸减小。此外,结果显示,与对照相比,处理过的样品的布拉格角(2θ)增加。 DSC和差示热分析分析表明,相对于对照,处理过的2-AP的熔融温度升高。此外,处理样品的熔融潜热增加了3.08%。 TGA分析显示,与对照相比,处理过的2-AP的热降解开始时间(T setup )和最高热分解温度(T max )增加。样品。另外,与对照相比,处理后的样品显示出重量减轻的减少,表明样品的热稳定性更高。紫外可见分析表明,与对照相比,处理后样品的吸收峰没有变化。 FT-IR光谱结果表明,处理后的样品中C-H拉伸振动2991→2955 cm -1 相对于对照物向下移动。

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