TY - JOUR
T1 - Roll-to-Roll Printing of Anomalous Nernst Thermopile for Direct Sensing of Perpendicular Heat Flux
AU - Tanaka, Hirokazu
AU - Higo, Tomoya
AU - Uesugi, Ryota
AU - Yamagata, Kazuto
AU - Nakanishi, Yosuke
AU - Machinaga, Hironobu
AU - Nakatsuji, Satoru
N1 - Publisher Copyright:
© 2023 The Authors. Advanced Materials published by Wiley-VCH GmbH.
PY - 2023/9/21
Y1 - 2023/9/21
N2 - The anomalous Nernst effect (ANE) converts heat flux perpendicular to the plane into electricity, in sharp contrast with the Seebeck effect (SE), enabling mass production, large area, and flexibility of their devices through ordinary thin-film fabrication techniques. Heat flux sensors, one of the most promising applications of ANE, are powerful devices for evaluating heat flow and can lead to energy savings through efficient thermal management. In reality, however, SE caused by the in-plane heat flux is always superimposed on the measurement signal, making it difficult to evaluate the perpendicular heat flux. Here, ANE-type heat flux sensors that selectively detect a perpendicular heat flux are fabricated by adjusting the net Seebeck coefficient in their thermopile circuit with mass-producible roll-to-roll sputtering methods. The direct sensing of perpendicular heat flux using ANE-based flexible thermopiles, as well as their simple fabrication process, paves the way for the practical application of thin-film thermoelectric devices.
AB - The anomalous Nernst effect (ANE) converts heat flux perpendicular to the plane into electricity, in sharp contrast with the Seebeck effect (SE), enabling mass production, large area, and flexibility of their devices through ordinary thin-film fabrication techniques. Heat flux sensors, one of the most promising applications of ANE, are powerful devices for evaluating heat flow and can lead to energy savings through efficient thermal management. In reality, however, SE caused by the in-plane heat flux is always superimposed on the measurement signal, making it difficult to evaluate the perpendicular heat flux. Here, ANE-type heat flux sensors that selectively detect a perpendicular heat flux are fabricated by adjusting the net Seebeck coefficient in their thermopile circuit with mass-producible roll-to-roll sputtering methods. The direct sensing of perpendicular heat flux using ANE-based flexible thermopiles, as well as their simple fabrication process, paves the way for the practical application of thin-film thermoelectric devices.
KW - anomalous Nernst effect (ANE)
KW - flexible electronics
KW - heat flux sensing
KW - magnetic thin films
KW - sensors
KW - thermoelectric devices
UR - https://www.scopus.com/pages/publications/85165449146
UR - https://www.scopus.com/pages/publications/85165449146#tab=citedBy
U2 - 10.1002/adma.202303416
DO - 10.1002/adma.202303416
M3 - Article
C2 - 37343181
AN - SCOPUS:85165449146
SN - 0935-9648
VL - 35
JO - Advanced Materials
JF - Advanced Materials
IS - 38
M1 - 2303416
ER -