FlexiTEC 2 – flexible and robust thermoelectric cooling
In plain English
AI plain-English summaryHeating and cooling a car cabin can drain up to 40% of an electric vehicle’s battery power. This project tackles that waste by developing flexible thermoelectric devices that cool the driver directly, rather than the entire cabin. Previous work shows that localised temperature control can cut cabin power use by 17%. The goal here is to improve both comfort and efficiency by creating thin, bendable cooling panels that can be built into car seats. Thermoelectric materials convert electricity into a temperature difference, but making them both flexible and robust has been a long-standing engineering challenge. This fellowship aims to solve that, producing devices that can bend without breaking. Along the way, the researcher will also adapt more rigid versions for medical and optoelectronic uses—for example, cooling laser components or patient skin during procedures. If successful, the work could directly extend EV range by reducing the energy diverted to climate control. It also aims to shake up a thermoelectric device market that has seen little major innovation in decades, shifting the field’s focus from materials research to practical, deployable products.
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