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Characterization of Atomic and Physical Properties of Biofield Energy Treated Manganese Sulfide Powder

机译:生物场能量处理的硫化锰粉末的原子和物理性质表征

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Manganese sulfide (MnS) is known for its wide applications in solar cell, opto-electronic devices, and photochemical industries. The present study was designed to evaluate the effect of biofield energy treatment on the atomic and physical properties of MnS. The MnS powder sample was equally divided into two parts, referred as to be control and to be treated. The treated part was subjected to Mr. Trivedi's biofield energy treatment. After that, both control and treated samples were investigated using X-ray diffraction (XRD), Fourier transform infrared (FT-IR) spectroscopy, and electron spin resonance (ESR) spectroscopy. The XRD data revealed that the biofield energy treatment has altered the lattice parameter, unit cell volume, density, and molecular weight of the treated MnS sample as compared to the control. The crystallite size on various planes was significantly changed from -50.0% to 33.3% in treated sample as compared to the control. The FT-IR analysis exhibited that the absorption band attributed to Mn-S stretching vibration was reduced from (634 cm~(-1)) to 613 cm~(-1) in treated MnS as compared to the control. Besides, the ESR study revealed that g-factor was reduced by 3.3% in the treated sample as compared to the control. Therefore, the biofield energy treated MnS could be applied for the use in solar cell and semiconductor applications.
机译:硫化锰(MnS)以其在太阳能电池,光电设备和光化学工业中的广泛应用而闻名。本研究旨在评估生物场能量处理对MnS原子和物理性质的影响。将MnS粉末样品平均分为两部分,分别称为对照和待处理。处理过的零件接受了Trivedi先生的生物场能量治疗。之后,使用X射线衍射(XRD),傅立叶变换红外(FT-IR)光谱和电子自旋共振(ESR)光谱研究了对照样品和处理样品。 XRD数据表明,与对照相比,生物场能量处理改变了所处理的MnS样品的晶格参数,晶胞体积,密度和分子量。与对照相比,处理后的样品在不同平面上的微晶尺寸从-50.0%显着变化为33.3%。 FT-IR分析表明,与对照相比,处理后的MnS引起的Mn-S拉伸振动的吸收带从(634 cm〜(-1))减小到613 cm〜(-1)。此外,ESR研究表明,与对照组相比,处理过的样品中的g因子降低了3.3%。因此,经生物场能量处理的MnS可用于太阳能电池和半导体应用。

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