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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Highly flexible chemical sensors based on polymer nanofiber field-effect transistors
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Highly flexible chemical sensors based on polymer nanofiber field-effect transistors

机译:基于聚合物纳米纤维场效应晶体管的高度柔性化学传感器

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Soft electronic devices are key components of flexible or wearable smart electronics. Chemical sensors based on organic field-effect transistors (OFETs) show great promise because of their high sensitivity, low cost, fast response, flexible applications, and signal amplification via gate voltage tuning. In addition, the sensor response can be made highly selective by incorporating specific functional groups or recognition elements. The response magnitude of an OFET sensor depends strongly on the surface area of the active layer that interacts with the analyte. In this study, two strategies including nanostructuring and surface functionalization have been explored to enhance the performance and sensitivity of OFET sensors. We describe the fabrication of highly flexible, electrospun poly(3,3-didodecylquaterthiophene)/calix[8]arene (PQT-12)/C[8]A sensors employing semiconducting polymer nanofibers (NFs) as the active layer. The resulting bendable and flexible PQT-12/C[8]A OFET sensors show high sensitivity to ethanol (192%) and toluene (229%) and moderate sensitivity to n-hexane (121%) with a minimum detectable level of 10 ppm. In addition, the PQT-12/C[8]A NF sensors are electrically stable under typical operating conditions with a bending radius down to 0.5 mm. This work demonstrates a viable approach for the fabrication of flexible OFETs for use as wearable sensors and health-monitoring devices.
机译:软电子设备是柔性或可穿戴智能电子设备的关键部件。基于有机场效应晶体管(OFET)的化学传感器由于它们的高灵敏度,低成本,快速响应,灵活的应用以及通过栅极电压调谐的信号放大而表示了很大的希望。另外,通过结合特定的官能团或识别元件,可以高度选择性的传感器响应。 OFET传感器的响应幅度强烈地取决于与分析物相互作用的有源层的表面积。在这项研究中,已经探索了两种策略,包括纳米结构和表面官能化,以提高OFET传感器的性能和敏感性。我们描述了高度柔性的电纺 - 聚(3,3-丁蛋白QuaterThiophene)/ Calix [8]芳烃(PQT-12)/ C [8]一种使用半导体聚合物纳米纤维(NFS)作为活性层的传感器。由此产生的可弯曲和柔性PQT-12 / C [8] A OFET传感器对乙醇(192%)和甲苯(229%)和对正己烷(121%)的中等敏感性的浓度显示出高敏感性,最小可检测水平为10ppm 。另外,PQT-12 / C [8] NF传感器在典型的操作条件下电稳定,弯曲半径下降至0.5mm。这项工作证明了一种用于制造柔性的可用性传感器和健康监测装置的可行方法。

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