Perinot Andrea, Caironi Mario
Center for Nano Science and Technology@PoliMi Istituto Italiano di Tecnologia via Giovanni Pascoli 70/3 20133 Milan Italy.
Adv Sci (Weinh). 2018 Dec 14;6(4):1801566. doi: 10.1002/advs.201801566. eCollection 2019 Feb 20.
Organic printed electronics are suitable for the development of wearable, lightweight, distributed applications in combination with cost-effective production processes. Nonetheless, some necessary features for several envisioned disruptive mass-produced products are still lacking: among these radio-frequency (RF) communication capability, which requires high operational speed combined with low supply voltage in electronic devices processed on cheap plastic foils. Here, it is demonstrated that high-frequency, low-voltage, polymer field-effect transistors can be fabricated on plastic with the sole use of a combination of scalable printing and digital laser-based techniques. These devices reach an operational frequency in excess of 1 MHz at the challengingly low bias voltage of 2 V, and exceed 14 MHz operation at 7 V. In addition, when integrated into a rectifying circuit, they can provide a DC voltage at an input frequency of 13.56 MHz, opening the way for the implementation of RF devices and tags with cost-effective production processes.
有机印刷电子技术适合与具有成本效益的生产工艺相结合,开发可穿戴、轻便、分布式应用。尽管如此,一些预想中的颠覆性大规模生产产品所需的必要特性仍然缺失:其中包括射频(RF)通信能力,这要求在廉价塑料箔上加工的电子设备中具备高运行速度和低电源电压。在此,证明了仅使用可扩展印刷和基于数字激光的技术组合,就能在塑料上制造高频、低压聚合物场效应晶体管。这些器件在2V的极低偏置电压下,工作频率超过1MHz,在7V时超过14MHz。此外,当集成到整流电路中时,它们可以在13.56MHz的输入频率下提供直流电压,为采用具有成本效益的生产工艺实现射频设备和标签开辟了道路。