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首页> 外文期刊>Journal of Materials Science >Dielectric response and ac conductivity of synthetic dopa-melanin polymer
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Dielectric response and ac conductivity of synthetic dopa-melanin polymer

机译:合成多巴-黑色素聚合物的介电响应和交流电导率

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The dielectric spectra of dopa-melanin have been examined over the wide frequency range 100 Hz-1000 MHz at room temperature. Synthetic dopa-melanin was obtained by oxidative polymerization of L-3,4-dihydroxyphenylalanine. The purpose of the present study was to characterize polarization effects, the electrical conduction mechanism and structural arrangement of the units taking part in these processes as a basis for future biological applications. Real and imaginary components of the dielectric permittivity show an anomalous low-frequency dispersion. Values of the power-law exponents were interpreted in terms of the cluster model of potentially mobile charges and the structural arrangement of molecular units in melanin. The fractal circuit model (self-similar branched porous electrode system) was found to be equivalent to the cluster model in the description of the dielectric response in melanin. It has been shown that relations between cluster model parameters p and n, and fractal dimensionalities of melanin, are fulfilled very well. The presented results support the earlier findings based on d.c. conductivity measurements, that charge hopping is the main conduction mechanism, which contributes to the dielectric polarization in the law-frequency region. Dielectric spectra at frequencies above 10MHz show small beta-relaxation features due to molecular polar segments and water molecules bound to melanin. (C) 1998 Kluwer Academic Publishers. [References: 26]
机译:在室温下,已在100 Hz-1000 MHz的宽频率范围内检查了多巴-黑色素的介电谱。合成的多巴-黑色素是通过L-3,4-二羟基苯丙氨酸的氧化聚合而获得的。本研究的目的是表征极化效应,参与这些过程的单元的电传导机理和结构安排,作为未来生物学应用的基础。介电常数的实部和虚部显示出异常的低频色散。幂律指数的值是根据潜在移动电荷的簇模型和黑色素中分子单元的结构排列来解释的。在描述黑色素介电响应时,发现分形电路模型(自相似分支多孔电极系统)等效于簇模型。结果表明,聚类模型参数p和n与黑色素的分形维数之间的关系可以很好地满足。提出的结果支持基于dc的早期发现。在电导率测量中,电荷跳跃是主要的传导机制,这有助于在法频区域进行介电极化。高于10MHz的频率的介电谱显示出小的β弛豫特征,这是由于分子极性段和水分子与黑色素结合所致。 (C)1998 Kluwer学术出版社。 [参考:26]

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