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Magnetoelectrics for Implantable Bioelectronics: Progress to Date
Accounts of Chemical Research ( IF 16.4 ) Pub Date : 2024-10-04 , DOI: 10.1021/acs.accounts.4c00307 Fatima Alrashdan, Kaiyuan Yang, Jacob T. Robinson
Accounts of Chemical Research ( IF 16.4 ) Pub Date : 2024-10-04 , DOI: 10.1021/acs.accounts.4c00307 Fatima Alrashdan, Kaiyuan Yang, Jacob T. Robinson
The coupling of magnetic and electric properties manifested in magnetoelectric (ME) materials has unlocked numerous possibilities for advancing technologies like energy harvesting, memory devices, and medical technologies. Due to this unique coupling, the magnetic properties of these materials can be tuned by an electric field; conversely, their electric polarization can be manipulated through a magnetic field.
中文翻译:
用于植入式生物电子学的磁电学:迄今为止的进展
磁电 (ME) 材料中体现的磁和电特性耦合为能量收集、存储设备和医疗技术等先进技术开启了许多可能性。由于这种独特的耦合,这些材料的磁性可以通过电场来调节;相反,它们的极化可以通过磁场来操纵。
更新日期:2024-10-04
中文翻译:
用于植入式生物电子学的磁电学:迄今为止的进展
磁电 (ME) 材料中体现的磁和电特性耦合为能量收集、存储设备和医疗技术等先进技术开启了许多可能性。由于这种独特的耦合,这些材料的磁性可以通过电场来调节;相反,它们的极化可以通过磁场来操纵。