• Medientyp: E-Artikel
  • Titel: Doped Organic Micro-Thermoelectric Coolers with Rapid Response Time
  • Beteiligte: Wang, Shu-Jen [Verfasser:in]; Wohlrab, Steve [Verfasser:in]; Reith, Heiko [Verfasser:in]; Berger, Dietmar [Verfasser:in]; Kleemann, Hans [Verfasser:in]; Nielsch, Kornelius [Verfasser:in]; Leo, Karl [Verfasser:in]
  • Erschienen: Weinheim: Wiley-VCH, [2024]
  • Erschienen in: Advanced electronic materials ; 8,12, (2022)
  • Sprache: Englisch
  • DOI: 10.1002/aelm.202200629
  • Schlagwörter: Wärmemanagement ; Peltier-Effekt ; organische Thermoelektrika ; organische Halbleiter ; molecular doping ; organic semiconductors ; Peltier effect ; thermal management ; Molekulare Dotierung ; organic thermoelectrics
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  • Beschreibung: Local thermal management has important implications regarding comfort, energy consumption, and electronic device performance/lifetime. While organic thermoelectrics have emerged as promising materials for flexible thermoelectric energy harvesting devices, their potential as Peltier cooling element has been largely overlooked. Here, micro-thermoelectric coolers based on doped small molecule thin-films with a fast response time (around 25 µs) which is among the fastest micro-thermoelectric coolers reported are presented. This experimental cooling performance is supported by simulation using the finite-element method for thermal transport. The results show that organic thermoelectrics offer great potential for flexible and wearable micro-thermoelectric cooling applications.
  • Zugangsstatus: Freier Zugang
  • Rechte-/Nutzungshinweise: Namensnennung (CC BY)