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A roadmap for graphene

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A roadmap for graphene. / Novoselov, K. S.; Falko, Vladimir; Colombo, L. et al.
In: Nature, Vol. 490, No. 7419, 11.10.2012, p. 192-200.

Research output: Contribution to Journal/MagazineLiterature reviewpeer-review

Harvard

Novoselov, KS, Falko, V, Colombo, L, Gellert, PR, Schwab, MG & Kim, K 2012, 'A roadmap for graphene', Nature, vol. 490, no. 7419, pp. 192-200. https://doi.org/10.1038/nature11458

APA

Novoselov, K. S., Falko, V., Colombo, L., Gellert, P. R., Schwab, M. G., & Kim, K. (2012). A roadmap for graphene. Nature, 490(7419), 192-200. https://doi.org/10.1038/nature11458

Vancouver

Novoselov KS, Falko V, Colombo L, Gellert PR, Schwab MG, Kim K. A roadmap for graphene. Nature. 2012 Oct 11;490(7419):192-200. doi: 10.1038/nature11458

Author

Novoselov, K. S. ; Falko, Vladimir ; Colombo, L. et al. / A roadmap for graphene. In: Nature. 2012 ; Vol. 490, No. 7419. pp. 192-200.

Bibtex

@article{14c19a48d991464e9b8460d4cea65f0c,
title = "A roadmap for graphene",
abstract = "Recent years have witnessed many breakthroughs in research on graphene (the first two-dimensional atomic crystal) as well as a significant advance in the mass production of this material. This one-atom-thick fabric of carbon uniquely combines extreme mechanical strength, exceptionally high electronic and thermal conductivities, impermeability to gases, as well as many other supreme properties, all of which make it highly attractive for numerous applications. Here we review recent progress in graphene research and in the development of production methods, and critically analyse the feasibility of various graphene applications.",
keywords = "ELECTRONIC-STRUCTURE, TRANSISTORS, HIGH-QUALITY, SOLAR-CELLS, CARBON NANOTUBES, BILAYER GRAPHENE, EPITAXIAL GRAPHENE, OPTICAL MODULATOR, SATURABLE ABSORBER, GRAPHITE",
author = "Novoselov, {K. S.} and Vladimir Falko and L. Colombo and Gellert, {P. R.} and Schwab, {M. G.} and K. Kim",
year = "2012",
month = oct,
day = "11",
doi = "10.1038/nature11458",
language = "English",
volume = "490",
pages = "192--200",
journal = "Nature",
issn = "0028-0836",
publisher = "Nature Publishing Group",
number = "7419",

}

RIS

TY - JOUR

T1 - A roadmap for graphene

AU - Novoselov, K. S.

AU - Falko, Vladimir

AU - Colombo, L.

AU - Gellert, P. R.

AU - Schwab, M. G.

AU - Kim, K.

PY - 2012/10/11

Y1 - 2012/10/11

N2 - Recent years have witnessed many breakthroughs in research on graphene (the first two-dimensional atomic crystal) as well as a significant advance in the mass production of this material. This one-atom-thick fabric of carbon uniquely combines extreme mechanical strength, exceptionally high electronic and thermal conductivities, impermeability to gases, as well as many other supreme properties, all of which make it highly attractive for numerous applications. Here we review recent progress in graphene research and in the development of production methods, and critically analyse the feasibility of various graphene applications.

AB - Recent years have witnessed many breakthroughs in research on graphene (the first two-dimensional atomic crystal) as well as a significant advance in the mass production of this material. This one-atom-thick fabric of carbon uniquely combines extreme mechanical strength, exceptionally high electronic and thermal conductivities, impermeability to gases, as well as many other supreme properties, all of which make it highly attractive for numerous applications. Here we review recent progress in graphene research and in the development of production methods, and critically analyse the feasibility of various graphene applications.

KW - ELECTRONIC-STRUCTURE

KW - TRANSISTORS

KW - HIGH-QUALITY

KW - SOLAR-CELLS

KW - CARBON NANOTUBES

KW - BILAYER GRAPHENE

KW - EPITAXIAL GRAPHENE

KW - OPTICAL MODULATOR

KW - SATURABLE ABSORBER

KW - GRAPHITE

U2 - 10.1038/nature11458

DO - 10.1038/nature11458

M3 - Literature review

VL - 490

SP - 192

EP - 200

JO - Nature

JF - Nature

SN - 0028-0836

IS - 7419

ER -