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金属与导电和可生物降解聚合物(PLLA-PPy 和 PCL-PPy)混合物的连接。

Junctions between metals and blends of conducting and biodegradable polymers (PLLA-PPy and PCL-PPy).

出版信息

Mater Sci Eng C Mater Biol Appl. 2012 Aug 1;32(6):1610-20. doi: 10.1016/j.msec.2012.04.051. Epub 2012 May 1.

Abstract

The junctions between newly developed biodegradable conducting polymers (polylactide-polypyrrole PLLA-PPy and polycaprolactone-polypyrrole PCL-PPy) and metal electrodes (Au, Au/Cu, Ag, Ag/Cu, Cu, Cr/Au/Cu, Pd/Au/Cu, Pt/Au/Cu) were studied. The objective was to determine the composite/metal combination having the lowest possible contact resistance and ohmic characteristics. In a first step, different surface treatments, adhesion and metal layers were tested in order to evaluate the contact resistance. Then the current-voltage (IV) characteristics were measured and both ohmic and rectifying behaviour were observed depending on the polymer/metal junctions investigated. The surface treatments studied included an argon sputtering step and a grinding of the polymer surface with the objective of improving the contact between the metal electrode and the polymer. It was found that the most favourable conditions resulted from a process flow without argon sputtering, without grinding for PLLA-PPy and with a slight grinding for PCL-PPy. Moreover the most favourable metal electrodes for PLLA-PPy were Pd/Au/Cu, while the best compromise for PCL-PPy was to use Au/Cu. For the rectifying polymer/metal junctions, the standard thermionic emission model modified with a series resistance was successfully applied to the measured current-voltage IV characteristics. The saturation current density J0, series resistance R, ideality diode factor n and barrier height φB were investigated. The Chot functions were computed for each rectifying junction and the corresponding threshold voltages were calculated. Finally the conductivity of both composites was evaluated as a function of temperature in the range of 30 °C to 80 °C. For PLLA-PPy a decrease of the resistivity was observed when the temperature was increasing, while no clearly recognisable pattern was identified for PCL-PPy in this temperature range. The electrical conductivity of the PLLA-PPy samples was found to follow the empirical Arrhenius model, and the difference between the Fermi energy EF and the mobility edge EC | EF - EC | as well as the conductivity at the mobility edge σC were evaluated. Moreover the electrical conductivity of the PLLA-PPy samples was found to follow the Mott variable range hopping (VRH) model, and the high temperature limit of conductivity σ1 as well as the Mott characteristic temperature T1 were calculated.

摘要

新开发的可生物降解导电聚合物(聚乳酸-聚吡咯 PLLA-PPy 和聚己内酯-聚吡咯 PCL-PPy)与金属电极(Au、Au/Cu、Ag、Ag/Cu、Cu、Cr/Au/Cu、Pd/Au/Cu、Pt/Au/Cu)之间的连接进行了研究。目的是确定具有最低可能接触电阻和欧姆特性的复合材料/金属组合。在第一步中,测试了不同的表面处理、附着力和金属层,以评估接触电阻。然后测量电流-电压 (IV) 特性,根据研究的聚合物/金属连接观察到欧姆和整流行为。研究的表面处理包括氩溅射步骤和聚合物表面的研磨,目的是改善金属电极与聚合物之间的接触。结果发现,最有利的条件来自于没有氩溅射、没有 PLLA-PPy 研磨和 PCL-PPy 轻微研磨的工艺流。此外,对于 PLLA-PPy 最有利的金属电极是 Pd/Au/Cu,而对于 PCL-PPy 最好的折衷方案是使用 Au/Cu。对于整流聚合物/金属连接,成功地将带有串联电阻的标准热电子发射模型应用于测量的电流-电压 IV 特性。研究了饱和电流密度 J0、串联电阻 R、理想二极管因子 n 和势垒高度 φB。为每个整流结计算了 Chot 函数,并计算了相应的阈值电压。最后,在 30°C 至 80°C 的温度范围内评估了两种复合材料的电导率。对于 PLLA-PPy,当温度升高时,电阻率降低,而在该温度范围内,PCL-PPy 没有明显可识别的模式。发现 PLLA-PPy 样品的电导率遵循经验 Arrhenius 模型,评估费米能级 EF 和迁移率边缘 EC | EF - EC |之间的差以及迁移率边缘 σC 的电导率。此外,发现 PLLA-PPy 样品的电导率遵循 Mott 可变范围跳跃 (VRH) 模型,计算了电导率的高温极限 σ1 和 Mott 特征温度 T1。

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