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ThermodifTusion-Assisted Pyroelectrics-Enabling Rapid and Stable Heat and Radiation Sensing

机译:ThermodifTusion辅助热释电器件,可实现快速,稳定的热和辐射感测

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摘要

Sensors for monitoring temperature, heat flux, and thermal radiation are essential for applications such as electronic skin. While pyroelectric and thermoelectric effects are suitable candidates as functional elements in such devices, both concepts show individual drawbacks in terms of zero equilibrium signals for pyroelectric materials and small or slow response of thermoelectric materials. Here, these drawbacks are overcome by introducing the concept of thermodiffusion-assisted pyroelectrics, which combines and enhances the performance of pyroelectric and ionic thermoelectric materials. The presented integrated concept provides both rapid initial response upon heating and stable synergistically enhanced signals upon prolonged exposure to heat stimuli. Likewise, incorporation of plasmonic metasurfaces enables the concept to provide both rapid and stable signals for radiation-induced heating. The performance of the concept and its working mechanism can be explained by ion-electron interactions at the interface between the pyroelectric and ionic thermoelectric materials.
机译:监视温度,热通量和热辐射的传感器对于电子皮肤等应用至关重要。尽管热电效应和热电效应适合用作此类设备中的功能元件,但是这两个概念在热电材料的零平衡信号和热电材料响应较小或缓慢方面均显示出各自的缺陷。在这里,通过引入热扩散辅助热释电的概念克服了这些缺点,该概念结合并增强了热释电和离子热电材料的性能。提出的集成概念既可以提供加热时的快速初始响应,也可以提供在长时间暴露于热刺激后稳定的协同增强信号。同样,等离子超表面的结合使该概念能够为辐射诱导的加热提供快速和稳定的信号。可以通过热电和离子热电材料之间的界面处的离子-电子相互作用来解释该概念的性能及其工作机理。

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