Publication | Closed Access
Thermodiffusion‐Assisted Pyroelectrics—Enabling Rapid and Stable Heat and Radiation Sensing
22
Citations
50
References
2019
Year
Optical MaterialsEngineeringElectronic SkinMonitoring TemperatureThermoelectricsThermal ConductivityElectronic DevicesHeat FluxThermodynamicsMaterials ScienceThermal PhysicsHeat TransferPyroelectricityElectronic MaterialsApplied PhysicsThermoelectric MaterialThermal SensorRadiation SensingThermal EngineeringFunctional MaterialsThermophysical Property
Abstract 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.
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