Unknown

Dataset Information

0

Sm-Co-based amorphous alloy films for zero-field operation of transverse thermoelectric generation.


ABSTRACT: Transverse thermoelectric generation using magnetic materials is essential to develop active thermal engineering technologies, for which the improvements of not only the thermoelectric output but also applicability and versatility are required. In this study, using combinatorial material science and lock-in thermography technique, we have systematically investigated the transverse thermoelectric performance of Sm-Co-based alloy films. The high-throughput material investigation revealed the best Sm-Co-based alloys with the large anomalous Nernst effect (ANE) as well as the anomalous Ettingshausen effect (AEE). In addition to ANE/AEE, we discovered unique and superior material properties in these alloys: the amorphous structure, low thermal conductivity, and large in-plane coercivity and remanent magnetization. These properties make it advantageous over conventional materials to realize heat flux sensing applications based on ANE, as our Sm-Co-based films can generate thermoelectric output without an external magnetic field. Importantly, the amorphous nature enables the fabrication of these films on various substrates including flexible sheets, making the large-scale and low-cost manufacturing easier. Our demonstration will provide a pathway to develop flexible transverse thermoelectric devices for smart thermal management.

SUBMITTER: Modak R 

PROVIDER: S-EPMC9662036 | biostudies-literature | 2022

REPOSITORIES: biostudies-literature

altmetric image

Publications

Sm-Co-based amorphous alloy films for zero-field operation of transverse thermoelectric generation.

Modak Rajkumar R   Sakuraba Yuya Y   Hirai Takamasa T   Yagi Takashi T   Sepehri-Amin Hossein H   Zhou Weinan W   Masuda Hiroto H   Seki Takeshi T   Takanashi Koki K   Ohkubo Tadakatsu T   Uchida Ken-Ichi KI  

Science and technology of advanced materials 20221110 1


Transverse thermoelectric generation using magnetic materials is essential to develop active thermal engineering technologies, for which the improvements of not only the thermoelectric output but also applicability and versatility are required. In this study, using combinatorial material science and lock-in thermography technique, we have systematically investigated the transverse thermoelectric performance of Sm-Co-based alloy films. The high-throughput material investigation revealed the best  ...[more]

Similar Datasets

| S-EPMC8245095 | biostudies-literature
| S-EPMC8824429 | biostudies-literature
| S-EPMC6707282 | biostudies-literature
| S-EPMC11501972 | biostudies-literature
| S-EPMC9712615 | biostudies-literature
| S-EPMC3968450 | biostudies-literature
| S-EPMC4643295 | biostudies-literature
| S-EPMC8888656 | biostudies-literature
| S-EPMC8125897 | biostudies-literature
| S-EPMC11018777 | biostudies-literature