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Modification of Optical, Structural and Dielectric Properties of MeV Ions Irradiated PS/Cu Nanocomposites

机译:MeV离子辐照PS / Cu纳米复合材料的光学,结构和介电性能的改性

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In order to study structural, thermal, optical and dielectric behaviors of composites, the films of Cu/polystyrene nanocomposites were synthesized at different concentrations of Cu-nanoparticles. These polymer nanocomposites were irradiated with carbon (85 MeV) and silicon (120 MeV) ions at different fluences. The samples were characterized using different techniques viz: X-ray diffraction, UV-visible spectroscopy, differential scanning calorimetry, and impedance gain phase analyzer. A noticeable increase in the intensity of X-ray diffraction peaks was observed after irradiation with 120 MeV Si-ions, which may be attributed to radiation-induced cross-linking in polymer. Optical properties like band gap was estimated for pure polymer and nanoconnposite films from their optical absorption spectra in the wavelength region 200-800 nm. It was found that the band gap value shifted to lower energy (from 4.38 eV to 3.40 eV) on doping with silver nanoparticles and also upon irradiation. Differential scanning calorimetry analysis revealed an increase in the glass transition temperature upon irradiation, which may be attributed to cross linking of polymer chain due to ion beam irradiation which is also corroborated with XRD analysis. Dependence of dielectric properties on frequency, ions and filler concentration was studied. The results revealed the enhancement in dielectric properties after doping nanoparticles and also upon irradiation. It was observed that the effect of Si-beam is more effectual than the C-beam because of large electronic energy loss of heavy ion.
机译:为了研究复合材料的结构,热,光学和介电性能,合成了不同浓度的铜纳米粒子的Cu /聚苯乙烯纳米复合材料薄膜。这些聚合物纳米复合材料以不同的通量用碳(85 MeV)和硅(120 MeV)离子辐照。使用不同的技术对样品进行表征,这些技术包括:X射线衍射,紫外可见光谱,差示扫描量热法和阻抗增益相位分析仪。用120 MeV Si离子辐照后,观察到X射线衍射峰强度显着增加,这可能归因于聚合物中辐射诱导的交联。根据纯聚合物和纳米复合材料薄膜在200-800 nm波长范围内的光吸收光谱,可以估算像带隙这样的光学性质。发现在掺杂银纳米颗粒时以及在辐照时,带隙值转移到较低的能量(从4.38eV到3.40eV)。差示扫描量热法分析显示了辐照时玻璃化转变温度的升高,这可能归因于离子束辐照引起的聚合物链的交联,这也得到了XRD分析的证实。研究了介电性质对频率,离子和填料浓度的依赖性。结果表明,掺杂纳米颗粒后以及辐照后介电性能增强。观察到,由于重离子的电子能量损失大,所以Si束的作用比C束的作用更大。

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