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Synthesis and Properties of Cupric Sulphate Doped Polyvinyl Pyrrolidone (PVP) Solutions

机译:硫酸铜掺杂聚乙烯吡咯烷酮(PVP)溶液的合成与性能

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摘要

The optical, electrical and acoustical properties of polymer solutions based on polyvinyl pyrrolidone (PVP) doped with cupric sulphate (CuSO4) were studied. The polymer solutions were prepared by varying the concentration of Cu in the PVP using a simple chemical route. The UV-visible spectroscopy results showed that the optical absorbance decreased with an increase in wavelength from 300 to 700nm. The optical band gaps were found to decrease with addition of the Cu salt in the polymer. The refractive index also showed significant variation with the doping of the CuSO4. The electrical conductivity of the polymer solutions was found to increase with temperature as well as concentration of Cu while the activation energy of electrical conduction decreased with concentration of Cu. The ultrasonic velocities of the polymer solutions were measured at a frequency of 1MHz using an ultrasonic interferometer. The ultrasonic velocity and surface tension were increased while the adiabatic compressibility, acoustic impedance and intermolecular free length, the average distance between the surfaces of the coils of adjacent molecules, were decreased with increase in the concentration of CuSO4 in the PVP.
机译:研究了基于聚乙烯吡咯烷酮(PVP)的聚合物溶液的光学,电气和声学性质研究掺杂有硫酸二硫酸铜(CUSO4)。通过使用简单的化学途径改变PVP中Cu的浓度来制备聚合物溶液。 UV可见光光谱结果表明,光学吸光度随比300至700nm的波长的增加而降低。发现光带间隙在添加聚合物中加入Cu盐来减少。折射率还显示出CUSO4的掺杂显着变化。发现聚合物溶液的电导率随温度和Cu的浓度而增加,而导电的激活能量随浓度的浓度降低。使用超声波干涉仪以1MHz的频率测量聚合物溶液的超声速度。随着PVP中CUSO4浓度的增加,电压速度和分子间自由长度增加了超声波速度和表面张力,电压可压缩性,声阻抗和分子间自由长度的平均距离。

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