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首页> 外文期刊>Journal of Thermodynamics & Catalysis >Biofield Energy Treatment: A Potential Strategy for Modulating Physical,Thermal and Spectral Properties of 3-Chloro-4-fluoroaniline
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Biofield Energy Treatment: A Potential Strategy for Modulating Physical,Thermal and Spectral Properties of 3-Chloro-4-fluoroaniline

机译:生物场能量处理:调节3-氯-4-氟苯胺的物理,热和光谱性质的潜在策略

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3-Chloro-4-fluoroaniline (CFA) is used as an intermediate for the synthesis of pharmaceutical compounds. The objective of this study was to investigate the influence of biofield energy treatment on the physical, thermal and spectral properties of CFA. The study was performed in two groups (control and treated). The control group remained as untreated, and the treated group received Mr. Trivedi’s biofield energy treatment. The control and treated CFA samples were further characterized by x-ray diffraction (XRD), differential scanning calorimetry (DSC), thermogravimetric analysis (TGA), fourier transform infrared (FT-IR) spectroscopy, and ultra violet-visible spectroscopy (UV-vis) analysis. The XRD analysis of treated CFA showed significant changes in the intensity of peaks as compared to the control. However, the average crystallite size (G) was significantly decreased by 22.08% in the treated CFA with respect to the control. The DSC analysis showed slight decrease in the melting temperature of treated CFA (47.56°C) as compared to the control (48.05°C). However, the latent heat of fusion in the treated sample was considerably changed by 4.28% with respect to the control. TGA analysis showed increase in maximum thermal decomposition temperature (Tmax) of the treated sample (163.34°C) as compared to the control sample (159.97°C). Moreover the onset temperature of treated CFA (148 °C) was also increased as compared to the control sample (140°C). Additionally, the weight loss of the treated sample was reduced (42.22%) with respect to the control (56.04%) that may be associated with increase in thermal stability. The FT-IR spectroscopic evaluation showed emergence of one new peak at 3639 cm-1 and alteration of the N-H (stretching and bending) peak in the treated sample as compared to the control. Overall, the result demonstrated that Mr. Trivedi’s biofield energy treatment has paramount influence on the physical, thermal and spectral properties of CFA.
机译:3-氯-4-氟苯胺(CFA)用作合成药物化合物的中间体。这项研究的目的是调查生物场能量处理对CFA的物理,热和光谱性质的影响。该研究分为两组(对照组和治疗组)进行。对照组保持未经治疗,治疗组接受了特里维迪先生的生物场能量治疗。对照和处理过的CFA样品进一步通过X射线衍射(XRD),差示扫描量热法(DSC),热重分析(TGA),傅立叶变换红外光谱(FT-IR)和紫外可见光谱(UV- vis)分析。与对照相比,处理过的CFA的XRD分析显示峰强度发生了显着变化。然而,相对于对照,在处理的CFA中,平均微晶尺寸(G)显着降低了22.08%。 DSC分析显示与对照(48.05℃)相比,处理过的CFA的熔融温度(47.56℃)略有降低。然而,相对于对照,处理后样品中的熔融潜热显着变化了4.28%。 TGA分析显示,与对照样品(159.97°C)相比,处理后样品(163.34°C)的最大热分解温度(Tmax)有所提高。而且,与对照样品(140℃)相比,处理过的CFA的起始温度(148℃)也增加了。另外,相对于对照(56.04%),处理样品的重量损失减少了(42.22%),这可能与热稳定性的增加有关。 FT-IR光谱评估显示在3639 cm-1处出现一个新峰,与对照相比,处理过的样品的N-H(拉伸和弯曲)峰发生了变化。总体而言,结果表明Trivedi先生的生物场能量处理对CFA的物理,热和光谱特性具有至关重要的影响。

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