基于PVDF的人体识别有机红外传感器的制备、表征和建模

G. Scheipl, M. Zirkl, B. Stadlober, J. Groten, G. Jakopic, J. Krenn, A. Sawatdee, P. Bodo, P. Andersson
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引用次数: 1

摘要

在这项工作中,开发了一种基于PVDF-TrFE聚合物的具有成本效益的薄膜传感器技术,用于检测环境温度变化。开发了一种用于获得铁电薄膜的湿化学制备方法,从而产生了基于-丁基内酯的溶胶-凝胶工艺。通过振动光谱和各种电学表征评价了合成材料作为红外传感层的适用性。在第二步中,开发和测试了实验室规模的程序,以适应柔性基板上的大面积印刷技术及其对整体传感器性能和稳定性的影响。为了简化不同工业应用中合适的传感器的设计过程,本文通过实验对基于多层传感器系统热分布的数学模型进行了评估和修正。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fabrication, characterization and modeling of PVDF based organic IR-sensors for human body recognition
Within this work a cost-effective thin film-sensor-technology based on PVDF-TrFE polymers for detection of ambient changes of temperature has been developed. A wet-\chemical fabrication routine for obtaining ferroelectric thin films has been developed leading to a gammabutyrolactone based sol-gel process. The suitability of the synthesized material with respect to its usage as IR-sensing layer has been evaluated by vibrational spectroscopy and various electrical characterizations. In a second step, the adaptation of the lab scale routines for large area printing techniques on flexible substrates and their influence on the overall sensor performance and stability has been developed and tested. For simplifying the design process of adequate sensors used in different industrial applications, a mathematical model based on the heat distribution in a multilayer sensor system has been assessed and revised by experiments.
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