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Dielectric relaxation behavior of colloidal suspensions of palladium nanoparticle chains dispersed in PVP/EG solution

机译:分散在PVP / EG溶液中的钯纳米粒子链的胶体悬浮液的介电弛豫行为

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Dielectric measurements were carried out on colloidal suspensions of palladium nanoparticle chains dispersed in poly(vinyl pyrrolidone)/ethylene glycol (PVP/EG) solution with different particle volume fractions, and dielectric relaxation with relaxation time distribution and small relaxation amplitude was observed in the frequency range from 10(5) to 10(7) Hz. By means of the method based on logarithmic derivative of the dielectric constant and a numerical Kramers-Kronig transform method, two dielectric relaxations were confirmed and dielectric parameters were determined from the dielectric spectra. The dielectric parameters showed a strong dependence on the volume fraction of palladium nanoparticle chain. Through analyzing limiting conductivity at low frequency, the authors found the conductance percolation phenomenon of the suspensions, and the threshold volume fraction is about 0.18. It was concluded from analyzing the dielectric parameters that the high frequency dielectric relaxation results from interfacial polarization and the low frequency dielectric relaxation is a consequence of counterion polarization. They also found that the dispersion state of the palladium nanoparticle chain in PVP/EG solution is dependent on the particle volume fraction, and this may shed some light on a better application of this kind of materials. (c) 2007 American Institute of Physics.
机译:对分散在具有不同粒子体积分数的聚乙烯吡咯烷酮/乙二醇(PVP / EG)溶液中的钯纳米粒子链的胶体悬浮液进行介电测量,观察到介电弛豫随弛豫时间分布和小的弛豫幅度范围从10(5)到10(7)Hz。通过基于介电常数对数导数的方法和数值Kramers-Kronig变换方法,确定了两个介电弛豫,并从介电谱确定了介电参数。介电参数显示出对钯纳米颗粒链的体积分数的强烈依赖性。通过分析低频极限电导率,发现悬浮液的电导渗流现象,阈值体积分数约为0.18。通过分析介电参数可以得出结论,高频介电弛豫是由界面极化引起的,而低频介电弛豫是抗衡离子极化的结果。他们还发现,钯纳米粒子链在PVP / EG溶液中的分散状态取决于粒子的体积分数,这可能为更好地使用这种材料提供一些启示。 (c)2007年美国物理研究所。

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