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Journal ArticleDOI

Transferred wrinkled Al2O3 for highly stretchable and transparent graphene–carbon nanotube transistors

TLDR
The fabrication of highly stretchable and transparent field-effect transistors combining graphene/single-walled carbon nanotube (SWCNT) electrodes and a SWCNT-network channel with a geometrically wrinkled inorganic dielectric layer that retained performance under strains as high as 20% without appreciable leakage current increases or physical degradation is reported.
Abstract
Despite recent progress in the production of bendable thin-film transistors, their development is limited by leakage currents and fragile inorganic oxides. Combining graphene and single-walled carbon nanotube electrodes with a geometrically wrinkled inorganic layer, highly stretchable and transparent field-effect transistors have now been demonstrated.

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Citations
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Journal ArticleDOI

Recent progress on flexible inorganic single-crystalline functional oxide films for advanced electronics

TL;DR: In this paper, the authors review the progress made in recent years in fabricating freestanding single-crystalline functional oxide films via chemical release methods and exfoliation methods.
Journal ArticleDOI

Controllable Fabrication of Large-Area Wrinkled Graphene on a Solution Surface

TL;DR: A liquid-phase shrink method to controllably fabricate large-area wrinkled graphene (WG) with high stretchability and can withstand more than 100% tensile strain and up to 720° twist is reported.
Journal ArticleDOI

Fabrication of Flexible, Redoxable, and Conductive Nanopillar Arrays with Enhanced Electrochemical Performance

TL;DR: The study suggests that the POM-Ppy/nanopillar electrodes have an excellent electrocatalytic activity toward hydrogen and high areal capacitance for pseudocapacitive electrodes.
Journal ArticleDOI

Extremely stretchable all-carbon-nanotube transistor on flexible and transparent substrates

TL;DR: In this article, a stretchable single-wall CNT conductive coatings on flexible and transparent elastomer substrates was fabricated and an active transistor was constructed on SWCNT thin films, which serve as active channel and electrodes, with polydimethylsiloxane thin film as the gate dielectric layer.
References
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Journal ArticleDOI

Large-scale pattern growth of graphene films for stretchable transparent electrodes

TL;DR: The direct synthesis of large-scale graphene films using chemical vapour deposition on thin nickel layers is reported, and two different methods of patterning the films and transferring them to arbitrary substrates are presented, implying that the quality of graphene grown by chemical vapours is as high as mechanically cleaved graphene.
Journal ArticleDOI

Roll-to-roll production of 30-inch graphene films for transparent electrodes

TL;DR: The roll-to-roll production and wet-chemical doping of predominantly monolayer 30-inch graphene films grown by chemical vapour deposition onto flexible copper substrates are reported, showing high quality and sheet resistances superior to commercial transparent electrodes such as indium tin oxides.
Journal ArticleDOI

Transfer of large-area graphene films for high-performance transparent conductive electrodes

TL;DR: An improved transfer process of large-area graphene grown on Cu foils by chemical vapor deposition is reported on, finding that the transferred graphene films have high electrical conductivity and high optical transmittance that make them suitable for transparent conductive electrode applications.
Journal ArticleDOI

Carbon-based electronics.

TL;DR: This work reviews the progress that has been made with carbon nanotubes and, more recently, graphene layers and nanoribbons and suggests that it could be possible to make both electronic and optoelectronic devices from the same material.
PatentDOI

Stretchable form of single crystal silicon for high performance electronics on rubber substrates

TL;DR: In this article, the authors present stretchable and printable semiconductors and electronic circuits capable of providing good performance when stretched, compressed, flexed, or otherwise deformed.
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