Department of Electrical and Electronic Engineering, University of Cagliari, Piazza d'Armi, 09123 Cagliari, Italy.
Sensors (Basel). 2018 Feb 26;18(3):688. doi: 10.3390/s18030688.
Organic Field-Effect Transistors (OFETs) are attracting a rising interest for the development of novel kinds of sensing platforms. In this paper, we report about a peculiar sensor device structure, namely Organic Charge-Modulated Field-Effect Transistor (OCMFET), capable of operating at low voltages and entirely fabricated with large-area techniques, i.e., inkjet printing and chemical vapor deposition, that can be easily upscaled to an industrial size. Device fabrication is described, and statistical characterization of the basic electronic parameters is reported. As an effective benchmark for the application of large-area fabricated OCMFET to the biomedical field, its combination with pyroelectric materials and compressible capacitors is discussed, in order to employ the proposed device as a temperature pressure sensor. The obtained sensors are capable to operate in conditions which are relevant in the biomedical field (temperature in the range of 18.5-50 °C, pressure in the range of 10²-10³ Pa) with reproducible and valuable performances, opening the way for the fabrication of low-cost, flexible sensing platforms.
有机场效应晶体管(OFET)在新型传感平台的发展中引起了越来越多的关注。在本文中,我们报告了一种特殊的传感器器件结构,即有机电荷调制场效应晶体管(OCMFET),它能够在低电压下工作,并且完全采用大面积技术制造,例如喷墨打印和化学气相沉积,可以很容易地扩展到工业规模。本文描述了器件的制造过程,并报告了基本电子参数的统计特性。作为将大面积制造的 OCMFET 应用于生物医学领域的有效基准,讨论了其与热释电材料和可压缩电容器的结合,以便将所提出的器件用作温度压力传感器。所得到的传感器能够在生物医学领域相关的条件下(温度范围为 18.5-50°C,压力范围为 10²-10³ Pa)工作,具有可重复和有价值的性能,为制造低成本、灵活的传感平台开辟了道路。