Stretchable and high-performance supercapacitors with crumpled graphene papers.

dc.contributor.author

Zang, Jianfeng

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Cao, Changyong

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Feng, Yaying

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Liu, Jie

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Zhao, Xuanhe

dc.date.accessioned

2023-06-01T13:52:30Z

dc.date.available

2023-06-01T13:52:30Z

dc.date.issued

2014-10

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2023-06-01T13:52:20Z

dc.description.abstract

Fabrication of unconventional energy storage devices with high stretchability and performance is challenging, but critical to practical operations of fully power-independent stretchable electronics. While supercapacitors represent a promising candidate for unconventional energy-storage devices, existing stretchable supercapacitors are limited by their low stretchability, complicated fabrication process, and high cost. Here, we report a simple and low-cost method to fabricate extremely stretchable and high-performance electrodes for supercapacitors based on new crumpled-graphene papers. Electrolyte-mediated-graphene paper bonded on a compliant substrate can be crumpled into self-organized patterns by harnessing mechanical instabilities in the graphene paper. As the substrate is stretched, the crumpled patterns unfold, maintaining high reliability of the graphene paper under multiple cycles of large deformation. Supercapacitor electrodes based on the crumpled graphene papers exhibit a unique combination of high stretchability (e.g., linear strain ~300%, areal strain ~800%), high electrochemical performance (e.g., specific capacitance ~196 F g(-1)), and high reliability (e.g., over 1000 stretch/relax cycles). An all-solid-state supercapacitor capable of large deformation is further fabricated to demonstrate practical applications of the crumpled-graphene-paper electrodes. Our method and design open a wide range of opportunities for manufacturing future energy-storage devices with desired deformability together with high performance.

dc.identifier

srep06492

dc.identifier.issn

2045-2322

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2045-2322

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https://hdl.handle.net/10161/27492

dc.language

eng

dc.publisher

Springer Science and Business Media LLC

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Scientific reports

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10.1038/srep06492

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Science & Technology

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Multidisciplinary Sciences

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Science & Technology - Other Topics

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ENERGY-STORAGE

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CARBON

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ELECTRONICS

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FILMS

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TRANSPARENT

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MULTIFUNCTIONALITY

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HYDROGELS

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PRESSURE

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SENSORS

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SILICON

dc.title

Stretchable and high-performance supercapacitors with crumpled graphene papers.

dc.type

Journal article

duke.contributor.orcid

Liu, Jie|0000-0003-0451-6111

pubs.begin-page

6492

pubs.issue

1

pubs.organisational-group

Duke

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Trinity College of Arts & Sciences

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Chemistry

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Institutes and Provost's Academic Units

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University Institutes and Centers

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Nicholas Institute-Energy Initiative

pubs.publication-status

Published

pubs.volume

4

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