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纳米结构 SmFeO 气体传感器:用于结直肠癌筛查的气体传感性能重现性研究。

Nanostructured SmFeO Gas Sensors: Investigation of the Gas Sensing Performance Reproducibility for Colorectal Cancer Screening.

机构信息

MNF - Micro Nano Facility, Bruno Kessler Foundation, Via Sommarive 18, 38123, Trento, Italy.

SCENT S.r.l., Via Quadrifoglio 11, 44124, Ferrara, Italy.

出版信息

Sensors (Basel). 2020 Oct 19;20(20):5910. doi: 10.3390/s20205910.

Abstract

Among the various chemoresistive gas sensing properties studied so far, the sensing response reproducibility, i.e., the capability to reproduce a device with the same sensing performance, has been poorly investigated. However, the reproducibility of the gas sensing performance is of fundamental importance for the employment of these devices in on-field applications, and to demonstrate the reliability of the process development. This sensor property became crucial for the preparation of medical diagnostic tools, in which the use of specific chemoresistive gas sensors along with a dedicated algorithm can be used for screening diseases. In this work, the reproducibility of SmFeO perovskite-based gas sensors has been investigated. A set of four SmFeO devices, obtained from the same screen-printing deposition, have been tested in laboratory with both controlled concentrations of CO and biological fecal samples. The fecal samples tested were employed in the clinical validation protocol of a prototype for non-invasive colorectal cancer prescreening. Sensors showed a high reproducibility degree, with an error lower than 2% of the response value for the test with CO and lower than 6% for fecal samples. Finally, the reproducibility of the SmFeO sensor response and recovery times for fecal samples was also evaluated.

摘要

在迄今为止研究的各种抗化学腐蚀性气体传感性能中,传感响应的可重现性(即具有相同传感性能的器件的再现能力)研究得很差。然而,气体传感性能的可重现性对于这些器件在现场应用中的使用以及证明工艺开发的可靠性至关重要。该传感器性能对于医疗诊断工具的制备变得至关重要,其中可以使用特定的抗化学腐蚀性气体传感器以及专用算法来筛选疾病。在这项工作中,研究了基于 SmFeO 钙钛矿的气体传感器的可重现性。从相同的丝网印刷沉积中获得的四组 SmFeO 器件在实验室中使用受控浓度的 CO 和生物粪便样本进行了测试。测试的粪便样本用于非侵入性结直肠癌预筛查原型的临床验证方案。传感器具有很高的重现性程度,CO 测试的响应值误差低于 2%,粪便样本的误差低于 6%。最后,还评估了 SmFeO 传感器对粪便样本的响应和恢复时间的可重现性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a400/7589820/25f96283bb40/sensors-20-05910-g001.jpg

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