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Printed magnetoresistive sensors for recyclable magnetoelectronics.


ABSTRACT: We have developed an innovative recyclable printed magnetoresistive sensor using GMR microflakes and AMR microparticles as functional fillers, with PECH as the elastomer binder. Under saturation magnetic fields of 100 mT and 30 mT, these sensors respectively exhibit magnetoresistance values of 4.7% and 0.45%. The excellent mechanical properties and thermal stability of the PECH elastomer binder endow these sensors with outstanding flexibility and temperature stability. This flexibility, low cost, and scalability make these sensors highly suitable for integration into flexible electronic devices, such as smart security systems and home automation. Moreover, these sensors are fully recyclable and reusable, allowing the materials to be separated, reused, and remanufactured without loss of performance. The low energy consumption of the production process and the recyclability of the materials significantly reduce the environmental impact of these magnetic field sensors.

SUBMITTER: Wang X 

PROVIDER: S-EPMC11367592 | biostudies-literature | 2024 Aug

REPOSITORIES: biostudies-literature

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Printed magnetoresistive sensors for recyclable magnetoelectronics.

Wang Xiaotao X   Guo Lin L   Bezsmertna Olha O   Wu Yuhan Y   Makarov Denys D   Xu Rui R  

Journal of materials chemistry. A 20240815 37


We have developed an innovative recyclable printed magnetoresistive sensor using GMR microflakes and AMR microparticles as functional fillers, with PECH as the elastomer binder. Under saturation magnetic fields of 100 mT and 30 mT, these sensors respectively exhibit magnetoresistance values of 4.7% and 0.45%. The excellent mechanical properties and thermal stability of the PECH elastomer binder endow these sensors with outstanding flexibility and temperature stability. This flexibility, low cost  ...[more]

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