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Nano silver diffusion behaviour on conductive polymer during doping process for high voltage application

机译:纳米银在高压施加过程中导电聚合物的扩散行为

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Conductive polymer had opened a new era of engineering for microelectronics and semiconductor applications. However, it is still a challenge for high voltage applications due to lower electrical conductivity compare to metals. This results tremendous energy losses during transmission and restricts its usage. In order to address such problem a novel method was investigated using nano silver particle doped iodothiophene since silver is the highest electrical conductive material. The experiments were carried out to study the organometallic diffusion behaviour of nanosilver doped iodothiophene with different concentration of iodothiophene. Five different mixing ratio between nanosilver and the solution of iodothiophene dissolved in diethyl ether were used which are 1:1.25, 1:1.5, 1:2.5, 1:3 and 1:5. It was revealed that there is an effective threshold concentration of which the nano silver evenly distributed and there was no coagulation observed. These parameters laid the foundation of better doping process between the nano silver and the polymer significantly which would contribute developing conductive polymer towards high voltage application for industries that are vulnerable to corrosive environment.
机译:导电聚合物已经为微电子和半导体应用开辟了一种新的工程时代。然而,由于与金属的电导率较低,它仍为高电压应用仍然是一个挑战。这导致传输过程中的能量损失巨大,限制了其使用情况。为了解决此类问题,使用纳米银颗粒掺杂碘噻吩研究了一种新方法,因为银是最高的导电材料。进行了实验,以研究纳米掺杂碘噻吩具有不同浓度的碘噻吩的有机金属扩散行为。使用纳米ilver和溶解在乙醚中的碘噻吩溶液之间的五种不同的混合比,其为1:1.25,1:1.5,1:2.5,1:3和1:5。据透露,存在有效的阈值浓度,其中纳米银均匀分布并且没有观察到凝血。这些参数奠定了纳米银和聚合物之间更好的掺杂过程的基础,这将有助于显影导电聚合物对容易腐蚀性环境的高压应用。

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