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A multi-component nanocomposite screen-printed ink with non-linear touch sensitive electrical conductivity.ud

机译:具有非线性触敏电导率的多组分纳米复合丝网印刷油墨。 ud

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摘要

Printable electronics is an innovative area of technology with great commercial potential. Here, a screen-printed functional ink, comprising a combination of semiconducting acicular particles, electrically insulating nanoparticles and a base polymer ink, is described that exhibits pronounced pressure sensitive electrical properties for applications in sensing and touch sensitive surfaces. The combination of these components in the as-printed ink yield a complex structure and a large and reproducible touch pressure sensitive resistance range. In contrast to the case for some composite systems, the resistance changes occur down to applied pressures of 13 Pa. Current–voltage measurements at fixed pressures show monotonic non-linear behaviour, which becomes more Ohmic at higher pressures and in all cases shows some hysteresis. The physical basis for conduction, particularly in the low pressure regime, can be described in terms of field assisted quantum mechanical tunnelling.
机译:可印刷电子产品是具有巨大商业潜力的技术创新领域。在此,描述了一种丝网印刷的功能性油墨,该油墨包括半球形的针状颗粒,电绝缘的纳米颗粒和基础聚合物油墨的组合,该油墨显示出明显的压敏电性能,可用于感测和触敏表面。这些组分在印刷油墨中的结合产生了复杂的结构以及较大且可再现的触摸压敏电阻范围。与某些复合系统的情况相反,在施加13 Pa的压力时,电阻会发生变化。在固定压力下的电流-电压测量显示出单调非线性行为,在较高压力下其表现出更大的欧姆性,并且在所有情况下均显示出滞后现象。传导的物理基础,特别是在低压状态下,可以用场辅助量子机械隧穿来描述。

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