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Biofield Treatment: A Potential Strategy for Modification of Physical and Thermal Properties of Indole

机译:生物场处理:吲哚的物理和热性质改性的潜在策略

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Indole compounds are important class of therapeutic molecules, which have excellent pharmaceutical applications. The objective of present research was to investigate the influence of biofield treatment on physical and thermal properties of indole. The study was performed in two groups (control and treated). The control group remained as untreated, and biofield treatment was given to treated group. The control and treated samples were characterized by X-ray diffraction (XRD), differential scanning calorimetry (DSC), thermogravimetric analysis (TGA), Fourier transform infrared (FT-IR) spectroscopy and ultraviolet-visible (UV-Vis) spectroscopy. XRD study demonstrated the increase in crystalline nature of treated indole as compared to control. Additionally, the treated indole showed increase in crystallite size by 2.53% as compared to control. DSC analysis of treated indole (54.45oC) showed no significant change in melting temperature (Tm) in comparison with control sample (54.76oC). A significant increase in latent heat of fusion (ΔH) by 30.86% was observed in treated indole with respect to control. Derivative thermogravimetry (DTG) of treated indole showed elevation in maximum thermal decomposition temperature (Tmax) 166.49oC as compared to control (163.37oC). This was due to increase in thermal stability of indole after biofield treatment. FT-IR analysis of treated indole showed increase in frequency of N-H stretching vibrational peak by 6 cm-1 as compared to control sample. UV spectroscopy analysis showed no alteration in absorption wavelength (λmax) of treated indole with respect to control. The present study showed that biofield has substantially affected the physical and thermal nature of indole.
机译:吲哚化合物是一类重要的治疗分子,具有出色的药学应用。本研究的目的是研究生物田处理对吲哚的物理和热学性质的影响。该研究分为两组(对照组和治疗组)进行。对照组保持未治疗状态,对治疗组进行生物野处理。通过X射线衍射(XRD),差示扫描量热法(DSC),热重分析(TGA),傅立叶变换红外(FT-IR)光谱和紫外可见(UV-Vis)光谱对对照样品和处理样品进行表征。 XRD研究表明与对照相比,处理过的吲哚的结晶性质增加。另外,与对照相比,处理过的吲哚显示出微晶尺寸增加了2.53%。经处理的吲哚(54.45oC)的DSC分析表明,与对照样品(54.76oC)相比,熔融温度(Tm)没有明显变化。相对于对照,在处理过的吲哚中观察到融合潜热(ΔH)显着增加30.86%。与对照(163.37oC)相比,处理过的吲哚的衍生热重法(DTG)显示最高热分解温度(Tmax)为166.49oC。这是由于生物田处理后吲哚的热稳定性提高。与对照样品相比,处理过的吲哚的FT-IR分析显示N-H拉伸振动峰的频率增加了6 cm-1。紫外光谱分析表明,相对于对照,处理过的吲哚的吸收波长(λmax)没有变化。本研究表明,生物领域已大大影响了吲哚的物理和热性质。

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