Two-dimensional flexible nanoelectronics

1.8kCitations
Citations of this article
1.6kReaders
Mendeley users who have this article in their library.

This article is free to access.

Abstract

2014/2015 represents the tenth anniversary of modern graphene research. Over this decade, graphene has proven to be attractive for thin-film transistors owing to its remarkable electronic, optical, mechanical and thermal properties. Even its major drawback - zero bandgap - has resulted in something positive: a resurgence of interest in two-dimensional semiconductors, such as dichalcogenides and buckled nanomaterials with sizeable bandgaps. With the discovery of hexagonal boron nitride as an ideal dielectric, the materials are now in place to advance integrated flexible nanoelectronics, which uniquely take advantage of the unmatched portfolio of properties of two-dimensional crystals, beyond the capability of conventional thin films for ubiquitous flexible systems.

Cite

CITATION STYLE

APA

Akinwande, D., Petrone, N., & Hone, J. (2014). Two-dimensional flexible nanoelectronics. Nature Communications . Nature Publishing Group. https://doi.org/10.1038/ncomms6678

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free