论文标题

使用喷墨打印技术在Kapton HN柔性膜上的纳米图案的具有成本效益的方法,以生产可打印的硝酸盐传感器,汞浮游生物,蛋白质传感器和有机薄膜晶体管

Cost-Effective Methods to Nanopattern Thermally Stable Platforms on Kapton HN Flexible Films Using Inkjet Printing Technology to Produce Printable Nitrate Sensors, Mercury Aptasensors, Protein Sensors, and Organic Thin Film Transistors

论文作者

Lin, Li Kai, Tsai, Jung Ting, Amaya, Susana Diaz, Oduncu, Muhammed R, Zhang, Yifan, Huang, Peng Yuan, Ostos, Carlos, Schmelzel, Jacob P, Mohammadrahimi, Raheleh, Xu, Pengyu, Raghunathan, Nithin, Zhang, Xinghang, Wei, Alexander, Bahr, David, Peroulis, Dimitrios, Stanciu, Lia A

论文摘要

Kapton HN膜由于其出色的热耐用性(高达400°C)而在全球范围内采用,因此允许基于纳米颗粒的金属油墨的高温烧结。 By carefully selecting inks and Kapton substrates, outstanding thermal stability and anti-delaminating features are obtained in both aqueous and organic solutions and were applied to four novel devices: a solid state ion selective nitrate sensor, an ssDNA based mercury aptasensor, a low cost protein sensor, and a long lasting organic thin film transistor (OTFT).在上述设备的开发过程中,进行了许多有关参数组合的实验研究。结果表明,离子选择性硝酸盐传感器显示了线性灵敏度范围,检测为2 ppm。汞传感器表现出RCT值与汞浓度增加之间的线性相关性。蛋白质印刷电路板(PCB)传感器提供了一种更简单的蛋白质检测方法。最后,OTFT表现出稳定的性能,具有线性和饱和度状态的迁移率值以及阈值电压。这些设备显示了它们的价值,并揭示了可以追求的可能性。

Kapton HN films, adopted worldwide due to their superior thermal durability (up to 400 °C), allow the high temperature sintering of nanoparticle based metal inks. By carefully selecting inks and Kapton substrates, outstanding thermal stability and anti-delaminating features are obtained in both aqueous and organic solutions and were applied to four novel devices: a solid state ion selective nitrate sensor, an ssDNA based mercury aptasensor, a low cost protein sensor, and a long lasting organic thin film transistor (OTFT). Many experimental studies on parameter combinations were conducted during the development of the above devices. The results showed that the ion selective nitrate sensor displayed a linear sensitivity range with a limit of detection of 2 ppm. The mercury sensor exhibited a linear correlation between the RCT values and the increasing concentrations of mercury. The protein printed circuit board (PCB) sensor provided a much simpler method of protein detection. Finally, the OTFT demonstrated a stable performance with mobility values for the linear and saturation regimes, and the threshold voltage. These devices have shown their value and reveal possibilities that could be pursued.

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