材料科学
超细纤维
压阻效应
电池(电)
复合材料
分辨率(逻辑)
拉伤
光电子学
纳米技术
计算机科学
量子力学
医学
物理
内科学
人工智能
功率(物理)
作者
Pariya Nazari,Rainer Bäuerle,Johannes Zimmermann,Christian Melzer,Christopher Schwab,Anna Smith,Wolfgang Kowalsky,Jasmin Aghassi‐Hagmann,Gerardo Hernandez‐Sosa,Uli Lemmer
标识
DOI:10.1002/adma.202212189
摘要
Abstract Highly sensitive microfiber strain sensors are promising for the detection of mechanical deformations in applications where limited space is available. In particular for in situ battery thickness monitoring where high resolution and low detection limit are key requirements. Herein, the realization of a highly sensitive strain sensor for in situ lithium‐ion (Li‐ion) battery thickness monitoring is presented. The compliant fiber‐shaped sensor is fabricated by an upscalable wet‐spinning method employing a composite of microspherical core‐shell conductive particles embedded in an elastomer. The electrical resistance of the sensor changes under applied strain, exhibiting a high strain sensitivity and extremely low strain detection limit of 0.00005 with high durability of 10 000 cycles. To demonstrate the accuracy and ease of applicability of this sensor, the real‐time thickness change of a Li‐ion battery pouch cell is monitored during the charge and discharge cycles. This work introduces a promising approach with the least material complexity for soft microfiber strain gauges.
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