Crossref journal-article
Springer Science and Business Media LLC
Nature Communications (297)
Bibliography

Yan, K., Wu, D., Peng, H., Jin, L., Fu, Q., Bao, X., & Liu, Z. (2012). Modulation-doped growth of mosaic graphene with single-crystalline p–n junctions for efficient photocurrent generation. Nature Communications, 3(1).

Authors 7
  1. Kai Yan (first)
  2. Di Wu (additional)
  3. Hailin Peng (additional)
  4. Li Jin (additional)
  5. Qiang Fu (additional)
  6. Xinhe Bao (additional)
  7. Zhongfan Liu (additional)
References 35 Referenced 98
  1. 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)
  2. 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)
  3. Schwierz F. Graphene transistors. Nat. Nano 5, 487–496 (2010). (10.1038/nnano.2010.89) / Nat. Nano by F Schwierz (2010)
  4. 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)
  5. Avouris P. Graphene: electronic and photonic properties and devices. Nano Lett. 10, 4285–4294 (2010). (10.1021/nl102824h) / Nano Lett. by P Avouris (2010)
  6. Liu M. et al. A graphene-based broadband optical modulator. Nature 474, 64–67 (2011). (10.1038/nature10067) / Nature by M Liu (2011)
  7. 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)
  8. 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)
  9. 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)
  10. 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)
  11. 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)
  12. 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)
  13. 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)
  14. 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)
  15. 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)
  16. 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)
  17. Sun Z. et al. Growth of graphene from solid carbon sources. Nature 468, 549–552 (2010). (10.1038/nature09579) / Nature by Z Sun (2010)
  18. 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)
  19. 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)
  20. 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)
  21. 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)
  22. 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)
  23. 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)
  24. 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)
  25. 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)
  26. Meyer J. C. et al. The structure of suspended graphene sheets. Nature 446, 60–63 (2007). (10.1038/nature05545) / Nature by JC Meyer (2007)
  27. 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)
  28. 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)
  29. 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)
  30. 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)
  31. 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)
  32. 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)
  33. Furchi M. et al. Microcavity-integrated graphene photodetector. Nano Lett. 12, 2773–2777 (2012). (10.1021/nl204512x) / Nano Lett. by M Furchi (2012)
  34. 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)
  35. 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)
Funders 0

None

@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 }