Crossref
journal-article
Springer Science and Business Media LLC
Nature Communications (297)
References
35
Referenced
98
-
Geim A. K. & Novoselov K. S. The rise of graphene. Nat. Mater. 6, 183–191 (2007).
(
10.1038/nmat1849
) / Nat. Mater. by AK Geim (2007) -
Liao L. et al. High-speed graphene transistors with a self-aligned nanowire gate. Nature 467, 305–308 (2010).
(
10.1038/nature09405
) / Nature by L Liao (2010) -
Schwierz F. Graphene transistors. Nat. Nano 5, 487–496 (2010).
(
10.1038/nnano.2010.89
) / Nat. Nano by F Schwierz (2010) -
Wang X. et al. N-doping of graphene through electrothermal reactions with ammonia. Science 324, 768–771 (2009).
(
10.1126/science.1170335
) / Science by X Wang (2009) -
Avouris P. Graphene: electronic and photonic properties and devices. Nano Lett. 10, 4285–4294 (2010).
(
10.1021/nl102824h
) / Nano Lett. by P Avouris (2010) -
Liu M. et al. A graphene-based broadband optical modulator. Nature 474, 64–67 (2011).
(
10.1038/nature10067
) / Nature by M Liu (2011) -
Xia F., Mueller T., Lin Y.-M., Valdes-Garcia A. & Avouris P. Ultrafast graphene photodetector. Nat. Nano 4, 839–843 (2009).
(
10.1038/nnano.2009.292
) / Nat. Nano by F Xia (2009) -
Katsnelson M. I., Novoselov K. S. & Geim A. K. Chiral tunnelling and the Klein paradox in graphene. Nat. Phys. 2, 620–625 (2006).
(
10.1038/nphys384
) / Nat. Phys. by MI Katsnelson (2006) -
Cheianov V. V., Fal’ko V. & Altshuler B. L. The focusing of electron flow and a veselago lens in graphene p-n junctions. Science 315, 1252–1255 (2007).
(
10.1126/science.1138020
) / Science by VV Cheianov (2007) -
Gabor N. M. et al. Hot carrier-assisted intrinsic photoresponse in graphene. Science 334, 648–652 (2011).
(
10.1126/science.1211384
) / Science by NM Gabor (2011) -
Sun D. et al. Ultrafast hot-carrier-dominated photocurrent in graphene. Nat. Nano 7, 114–118 (2012).
(
10.1038/nnano.2011.243
) / Nat. Nano by D Sun (2012) -
Lohmann T., von Klitzing K. & Smet J. H. Four-terminal magneto-transport in graphene p-n junctions created by spatially selective doping. Nano Lett. 9, 1973–1979 (2009).
(
10.1021/nl900203n
) / Nano Lett. by T Lohmann (2009) -
Li X. et al. Large-area synthesis of high-quality and uniform graphene films on copper foils. Science 324, 1312–1314 (2009).
(
10.1126/science.1171245
) / Science by X Li (2009) -
Bae S. et al. Roll-to-roll production of 30-inch graphene films for transparent electrodes. Nat. Nano 5, 574–578 (2010).
(
10.1038/nnano.2010.132
) / Nat. Nano by S Bae (2010) -
Reddy A. L. M. et al. Synthesis of nitrogen-doped graphene films for lithium battery application. ACS Nano 4, 6337–6342 (2010).
(
10.1021/nn101926g
) / ACS Nano by ALM Reddy (2010) -
Jin Z., Yao J., Kittrell C. & Tour J. M. Large-scale growth and characterizations of nitrogen-doped monolayer graphene sheets. ACS Nano 5, 4112–4117 (2011).
(
10.1021/nn200766e
) / ACS Nano by Z Jin (2011) -
Sun Z. et al. Growth of graphene from solid carbon sources. Nature 468, 549–552 (2010).
(
10.1038/nature09579
) / Nature by Z Sun (2010) -
Yang C., Zhong Z. & Lieber C. M. Encoding electronic properties by synthesis of axial modulation-doped silicon nanowires. Science 310, 1304–1307 (2005).
(
10.1126/science.1118798
) / Science by C Yang (2005) -
Yu Q. et al. Control and characterization of individual grains and grain boundaries in graphene grown by chemical vapour deposition. Nat. Mater. 10, 443–449 (2011).
(
10.1038/nmat3010
) / Nat. Mater. by Q Yu (2011) -
Giesen M., Phaneuf R. J., Williams E. D., Einstein T. L. & Ibach H. Characterization of p-n junctions and surface-states on silicon devices by photoemission electron microscopy. Appl. Phys. A Mater. Sci. Proc. 64, 423–430 (1997).
(
10.1007/s003390050500
) / Appl. Phys. A Mater. Sci. Proc. by M Giesen (1997) -
Babout M., Bosse J. C. L., Lopez J., Gauthier R. & Guittard C. Mirror electron microscopy applied to the determination of the total electron reflection coefficient at a metallic surface. J. Phys. D Appl. Phys. 10, 2331 (1977).
(
10.1088/0022-3727/10/17/005
) / J. Phys. D Appl. Phys. by M Babout (1977) -
Wu Y. et al. Growth mechanism and controlled synthesis of AB-stacked bilayer graphene on Cu–Ni alloy foils. ACS Nano 6, 7731–7738 (2012).
(
10.1021/nn301689m
) / ACS Nano by Y Wu (2012) -
Ferrari A. C. et al. Raman spectrum of graphene and graphene layers. Phys. Rev. Lett. 97, 187401 (2006).
(
10.1103/PhysRevLett.97.187401
) / Phys. Rev. Lett. by AC Ferrari (2006) -
Yan J., Zhang Y., Kim P. & Pinczuk A. Electric field effect tuning of electron-phonon coupling in graphene. Phys. Rev. Lett. 98, 166802 (2007).
(
10.1103/PhysRevLett.98.166802
) / Phys. Rev. Lett. by J Yan (2007) -
Das A. et al. Monitoring dopants by Raman scattering in an electrochemically top-gated graphene transistor. Nat. Nano 3, 210–215 (2008).
(
10.1038/nnano.2008.67
) / Nat. Nano by A Das (2008) -
Meyer J. C. et al. The structure of suspended graphene sheets. Nature 446, 60–63 (2007).
(
10.1038/nature05545
) / Nature by JC Meyer (2007) -
Novoselov K. S. et al. Two-dimensional gas of massless Dirac fermions in graphene. Nature 438, 197–200 (2005).
(
10.1038/nature04233
) / Nature by KS Novoselov (2005) -
Yazyev O. V. & Louie S. G. Electronic transport in polycrystalline graphene. Nat. Mater. 9, 806–809 (2010).
(
10.1038/nmat2830
) / Nat. Mater. by OV Yazyev (2010) -
Zuev Y. M., Chang W. & Kim P. Thermoelectric and magnetothermoelectric transport measurements of graphene. Phys. Rev. Lett. 102, 096807 (2009).
(
10.1103/PhysRevLett.102.096807
) / Phys. Rev. Lett. by YM Zuev (2009) -
Winzer T., Knorr A. & Malic E. Carrier multiplication in graphene. Nano Lett. 10, 4839–4843 (2010).
(
10.1021/nl1024485
) / Nano Lett. by T Winzer (2010) -
Liu Y. et al. Plasmon resonance enhanced multicolour photodetection by graphene. Nat. Commun. 2, 579 (2011).
(
10.1038/ncomms1589
) / Nat. Commun. by Y Liu (2011) -
Echtermeyer T. J. et al. Strong plasmonic enhancement of photovoltage in graphene. Nat. Commun. 2, 458 (2011).
(
10.1038/ncomms1464
) / Nat. Commun. by TJ Echtermeyer (2011) -
Furchi M. et al. Microcavity-integrated graphene photodetector. Nano Lett. 12, 2773–2777 (2012).
(
10.1021/nl204512x
) / Nano Lett. by M Furchi (2012) -
Qu L., Liu Y., Baek J.-B. & Dai L. Nitrogen-doped graphene as efficient metal-free electrocatalyst for oxygen reduction in fuel cells. ACS Nano 4, 1321–1326 (2010).
(
10.1021/nn901850u
) / ACS Nano by L Qu (2010) -
Jeong H. M. et al. Nitrogen-doped graphene for high-performance ultracapacitors and the importance of nitrogen-doped sites at basal planes. Nano Lett. 11, 2472–2477 (2011).
(
10.1021/nl2009058
) / Nano Lett. by HM Jeong (2011)
Dates
Type | When |
---|---|
Created | 12 years, 8 months ago (Dec. 11, 2012, 4:34 a.m.) |
Deposited | 2 years, 8 months ago (Jan. 5, 2023, 7:20 p.m.) |
Indexed | 1 week, 2 days ago (Aug. 27, 2025, 12:30 p.m.) |
Issued | 12 years, 8 months ago (Dec. 11, 2012) |
Published | 12 years, 8 months ago (Dec. 11, 2012) |
Published Online | 12 years, 8 months ago (Dec. 11, 2012) |
@article{Yan_2012, title={Modulation-doped growth of mosaic graphene with single-crystalline p–n junctions for efficient photocurrent generation}, volume={3}, ISSN={2041-1723}, url={http://dx.doi.org/10.1038/ncomms2286}, DOI={10.1038/ncomms2286}, number={1}, journal={Nature Communications}, publisher={Springer Science and Business Media LLC}, author={Yan, Kai and Wu, Di and Peng, Hailin and Jin, Li and Fu, Qiang and Bao, Xinhe and Liu, Zhongfan}, year={2012}, month=dec }