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Highly Stretchable and Conductive Core-Sheath Chemical Vapor Deposition Graphene Fibers and Their Applications in Safe Strain Sensors

机译:高度可拉伸和导电的芯鞘化学气相沉积石墨烯纤维及其在安全应变传感器中的应用

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摘要

Highly stretchable and conductive core-sheath nanofibers are significant for flexible and wearable micro-electronics. Core-sheath fibers were massively fabricated from ultralong chemical vapor deposition (CVD)-grown graphene bundles. They exhibited superior conductivity and excellent mechanical properties that exceeded those of the reduced graphene oxide fibers. The intrinsic dynamic fracture procedure and mechanism of the core-sheath nanofibers were investigated. Furthermore, safe strain sensors based on as-prepared core-sheath CVD graphene fibers have been demonstrated as a proof-of-concept application. The performance of strain sensors has been greatly improved by using CVD 2 3 4 graphene fibers.
机译:高度可拉伸且导电的芯鞘纳米纤维对于柔性和可穿戴微电子学非常重要。芯鞘纤维是由超长化学气相沉积(CVD)生长的石墨烯束大规模制造的。它们表现出优异的电导率和出色的机械性能,超过了还原型氧化石墨烯纤维。研究了芯鞘纳米纤维的内在动态断裂过程和机理。此外,已经证明了基于制备的芯鞘CVD石墨烯纤维的安全应变传感器作为概念验证应用。通过使用CVD 2 3 4石墨烯纤维,应变传感器的性能得到了极大的提高。

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