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Fabrication and characterization techniques for resistivity devicesbased on salmon-derived DNA

机译:基于鲑鱼来源的DNA的电阻率器件的制造和表征技术

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The processing, fabrication and measurement of resistivity devices using salmon-derived DNA are reviewed in some detail. Details of the current transients that are recorded during the alternating-polarity technique are examined and identified. The DC volume resistivities of both as-received DNA and DNA-CTMA as well as the resistivity dependence on the molecular weight of DNA(sonicated)-CTMA are reviewed, which includes an analysis of this dependence and the effects of humidity on the measurements. Using the Miller-Abrahams model for hopping conduction provides insight into the relative sizes of the pre-exponential factors of the Arrhenius functions for the resistivity data of a variety of oil-derived polymers, and DNA and silk biopolymers.
机译:详细介绍了使用鲑鱼来源的DNA进行电阻率设备的处理,制造和测量。检查并确定了交流极性技术期间记录的电流瞬变的详细信息。审查了原样DNA和DNA-CTMA的DC体积电阻率以及电阻率对DNA(超声)-CTMA分子量的依赖性,包括对该依赖性的分析以及湿度对测量的影响。使用Miller-Abrahams模型进行跃迁传导,可以深入了解Arrhenius函数的指数前因子的相对大小,以获取各种石油衍生聚合物以及DNA和丝绸生物聚合物的电阻率数据。

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