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Impedance spectroscopy properties of polypyrrole doped with boric acid

机译:硼酸掺杂的聚吡咯的阻抗谱性质

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The electrical conductivity and dielectric properties of polypyrrole doped with boric acid have been investigated. The direct current conductivity (dc) of the polymer increases with increasing temperature. The alternating current (ac) conductivity of the polymer obeys the power law, i.e., sigma_(ac)(omega)=A omega~s. The alternating conductivity of polypyrrole doped with boric acid is controlled by the correlated barrier hopping model. The activation energy for alternating current mechanism decreases with increasing frequency which confirms the hopping conduction to the dominant mechanism as compared with the dc activation energy. The density of localized states N(Ef) for polypyrrole doped with boric acid was in the range of 2.5-9.2 × 10~(22) cm~(-3) for various temperatures. The dielectric relaxation mechanism was explained on the basis of complex dielectric modulus. The imaginary modulus plot at different temperatures shows a dielectric mechanism with non-Debye relaxation. Boric acid can be a good candidate for controlling the electrical conductivity of the conducting polymer.
机译:研究了硼酸掺杂的聚吡咯的电导率和介电性能。聚合物的直流电导率(dc)随着温度的升高而增加。聚合物的交流电(ac)电导率服从幂定律,即sigma_(ac)ω=AΩ·s。掺杂硼酸的聚吡咯的交替电导率由相关的势垒跳跃模型控制。交流机制的激活能量随频率的增加而降低,这与直流激活能量相比,确认了到主导机制的跳跃传导。掺杂硼酸的聚吡咯在不同温度下的局部态密度N(Ef)为2.5-9.2×10〜(22)cm〜(-3)。基于复数介电模量解释了介电弛豫机理。在不同温度下的虚数模量图显示了具有非德拜弛豫的介电机理。硼酸可以是用于控制导电聚合物的电导率的良好候选者。

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