Graphene-Based Flexible and Stretchable Electronics

Graphene provides outstanding properties that can be integrated into various flexible and stretchable electronic devices in a conventional, scalable fashion. The mechanical, electrical, and optical properties of graphene make it an attractive candidate for applications in electronics, energy‐harvest...

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Veröffentlicht in:Advanced materials (Weinheim) 2016-06, Vol.28 (22), p.4184-4202
Hauptverfasser: Jang, Houk, Park, Yong Ju, Chen, Xiang, Das, Tanmoy, Kim, Min-Seok, Ahn, Jong-Hyun
Format: Artikel
Sprache:eng
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Zusammenfassung:Graphene provides outstanding properties that can be integrated into various flexible and stretchable electronic devices in a conventional, scalable fashion. The mechanical, electrical, and optical properties of graphene make it an attractive candidate for applications in electronics, energy‐harvesting devices, sensors, and other systems. Recent research progress on graphene‐based flexible and stretchable electronics is reviewed here. The production and fabrication methods used for target device applications are first briefly discussed. Then, the various types of flexible and stretchable electronic devices that are enabled by graphene are discussed, including logic devices, energy‐harvesting devices, sensors, and bioinspired devices. The results represent important steps in the development of graphene‐based electronics that could find applications in the area of flexible and stretchable electronics. The outstanding properties of graphene enable a novel form of electronics in a conventional, scalable fashion. Recent progress in graphene‐based flexible and stretchable electronics is reviewed, from the production of the graphene to its applications, including logic gates, energy‐harvesting devices, sensors, and bioinspired devices.
ISSN:0935-9648
1521-4095
DOI:10.1002/adma.201504245