Crossref
journal-article
Springer Science and Business Media LLC
Nature Nanotechnology (297)
Authors
12
- Likai Li (first)
- Guo Jun Ye (additional)
- Vy Tran (additional)
- Ruixiang Fei (additional)
- Guorui Chen (additional)
- Huichao Wang (additional)
- Jian Wang (additional)
- Kenji Watanabe (additional)
- Takashi Taniguchi (additional)
- Li Yang (additional)
- Xian Hui Chen (additional)
- Yuanbo Zhang (additional)
References
36
Referenced
291
- Sarma, S. D. & Pinczuk, A. Perspectives in Quantum Hall Effects (Wiley, 2004). / Perspectives in Quantum Hall Effects by SD Sarma (2004)
-
Ando, T., Fowler, A. B. & Stern, F. Electronic properties of two-dimensional systems. Rev. Mod. Phys. 54, 437–672 (1982).
(
10.1103/RevModPhys.54.437
) / Rev. Mod. Phys by T Ando (1982) -
Nayak, C., Simon, S. H., Stern, A., Freedman, M. & Das Sarma, S. Non-Abelian anyons and topological quantum computation. Rev. Mod. Phys. 80, 1083–1159 (2008).
(
10.1103/RevModPhys.80.1083
) / Rev. Mod. Phys by C Nayak (2008) -
Castro Neto, A. H., Guinea, F., Peres, N. M. R., Novoselov, K. S. & Geim, A. K. The electronic properties of graphene. Rev. Mod. Phys. 81, 109–162 (2009).
(
10.1103/RevModPhys.81.109
) / Rev. Mod. Phys by AH Castro Neto (2009) -
Xu, X., Yao, W., Xiao, D. & Heinz, T. F. Spin and pseudospins in layered transition metal dichalcogenides. Nature Phys. 10, 343–350 (2014).
(
10.1038/nphys2942
) / Nature Phys by X Xu (2014) -
Li, L. et al. Black phosphorus field-effect transistors. Nature Nanotech. 9, 372–377 (2014).
(
10.1038/nnano.2014.35
) / Nature Nanotech by L Li (2014) -
Liu, H. et al. Phosphorene: an unexplored 2D semiconductor with a high hole mobility. ACS Nano 8, 4033–4041 (2014).
(
10.1021/nn501226z
) / ACS Nano by H Liu (2014) -
Koenig, S. P., Doganov, R. A., Schmidt, H., Neto, A. H. C. & Özyilmaz, B. Electric field effect in ultrathin black phosphorus. Appl. Phys. Lett. 104, 103106 (2014).
(
10.1063/1.4868132
) / Appl. Phys. Lett by SP Koenig (2014) -
Takao, Y. & Morita, A. Electronic structure of black phosphorus: tight binding approach. Physica B+C 105, 93–98 (1981).
(
10.1016/0378-4363(81)90222-9
) / Physica B+C by Y Takao (1981) -
Tran, V., Soklaski, R., Liang, Y. & Yang, L. Layer-controlled band gap and anisotropic excitons in few-layer black phosphorus. Phys. Rev. B 89, 235319 (2014).
(
10.1103/PhysRevB.89.235319
) / Phys. Rev. B by V Tran (2014) -
Castellanos-Gomez, A. et al. Isolation and characterization of few-layer black phosphorus. 2D Mater. 1, 025001 (2014).
(
10.1088/2053-1583/1/2/025001
) / 2D Mater by A Castellanos-Gomez (2014) -
Das, S. et al. Tunable transport gap in phosphorene. Nano Lett. 14, 5733–5739 (2014).
(
10.1021/nl5025535
) / Nano Lett by S Das (2014) - Yuan, H. et al. Broadband linear-dichroic photodetector in a black phosphorus vertical p–n junction. Preprint at http://arxiv.org/abs/1409.4729 (2014).
-
Zhang, S. et al. Extraordinary photoluminescence and strong temperature/angle-dependent Raman responses in few-layer phosphorene. ACS Nano 8, 9590–9596 (2014).
(
10.1021/nn503893j
) / ACS Nano by S Zhang (2014) - Wang, X. et al. Highly anisotropic and robust excitons in monolayer black phosphorus. Preprint at http://arxiv.org/abs/1411.1695 (2014).
-
Podzorov, V., Gershenson, M. E., Kloc, C., Zeis, R. & Bucher, E. High-mobility field-effect transistors based on transition metal dichalcogenides. Appl. Phys. Lett. 84, 3301–3303 (2004).
(
10.1063/1.1723695
) / Appl. Phys. Lett by V Podzorov (2004) - Schwierz, F. & Liou, J. J. Modern Microwave Transistors: Theory, Design, and Performance (Wiley-Interscience, 2003). / Modern Microwave Transistors: Theory, Design, and Performance by F Schwierz (2003)
-
Keyes, R. W. The electrical properties of black phosphorus. Phys. Rev. 92, 580–584 (1953).
(
10.1103/PhysRev.92.580
) / Phys. Rev by RW Keyes (1953) -
Warschauer, D. Electrical and optical properties of crystalline black phosphorus. J. Appl. Phys. 34, 1853–1860 (1963).
(
10.1063/1.1729699
) / J. Appl. Phys by D Warschauer (1963) -
Maruyama, Y., Suzuki, S., Kobayashi, K. & Tanuma, S. Synthesis and some properties of black phosphorus single crystals. Physica B+C 105, 99–102 (1981).
(
10.1016/0378-4363(81)90223-0
) / Physica B+C by Y Maruyama (1981) -
Akahama, Y., Endo, S. & Narita, S. Electrical properties of black phosphorus single crystals. J. Phys. Soc. Jpn 52, 2148–2155 (1983).
(
10.1143/JPSJ.52.2148
) / J. Phys. Soc. Jpn by Y Akahama (1983) -
Xia, F., Wang, H. & Jia, Y. Rediscovering black phosphorus as an anisotropic layered material for optoelectronics and electronics. Nature Commun. 5, 4458 (2014).
(
10.1038/ncomms5458
) / Nature Commun by F Xia (2014) -
Wang, H. et al. Black phosphorus radio frequency transistors. Nano Lett. 14, 6424–6429 (2014).
(
10.1021/nl5029717
) / Nano Lett by H Wang (2014) -
Dean, C. R. et al. Boron nitride substrates for high-quality graphene electronics. Nature Nanotech. 5, 722–726 (2010).
(
10.1038/nnano.2010.172
) / Nature Nanotech by CR Dean (2010) -
Sze, S. M. & Ng, K. K. Physics of Semiconductor Devices (Wiley, 2006).
(
10.1002/0470068329
) / Physics of Semiconductor Devices by SM Sze (2006) -
Datta, S. Electronic Transport in Mesoscopic Systems (Cambridge Univ. Press, 1995).
(
10.1017/CBO9780511805776
) / Electronic Transport in Mesoscopic Systems by S Datta (1995) -
Ye, J. T. et al. Superconducting dome in a gate-tuned band insulator. Science 338, 1193–1196 (2012).
(
10.1126/science.1228006
) / Science by JT Ye (2012) -
Shoenberg, D. Magnetic Oscillations in Metals (Cambridge Univ. Press, 1984).
(
10.1017/CBO9780511897870
) / Magnetic Oscillations in Metals by D Shoenberg (1984) -
Zhang, Y., Tan, Y-W., Stormer, H. L. & Kim, P. Experimental observation of the quantum Hall effect and Berry's phase in graphene. Nature 438, 201–204 (2005).
(
10.1038/nature04235
) / Nature by Y Zhang (2005) - Zhou, X. Y. et al. Landau levels and magneto-transport property of monolayer phosphorene. Preprint at http://arxiv.org/abs/1411.4275 (2014).
-
Narita, S. et al. Far-infrared cyclotron resonance absorptions in black phosphorus single crystals. J. Phys. Soc. Jpn 52, 3544–3553 (1983).
(
10.1143/JPSJ.52.3544
) / J. Phys. Soc. Jpn by S Narita (1983) -
Fang, F. F. & Stiles, P. J. Effects of a tilted magnetic field on a two-dimensional electron gas. Phys. Rev. 174, 823–828 (1968).
(
10.1103/PhysRev.174.823
) / Phys. Rev by FF Fang (1968) - Tayari, V. et al. Two-dimensional magnetotransport in a black phosphorus naked quantum well. Preprint at http://arxiv.org/abs/1412.0259 (2014).
- Chen, X. et al. High quality sandwiched black phosphorus heterostructure and its quantum oscillations. Preprint at http://arxiv.org/abs/1412.1357 (2014).
-
Gillgren, N. et al. Gate tunable quantum oscillations in air-stable and high mobility few-layer phosphorene heterostructures. 2D Mater. 2, 011001 (2015).
(
10.1088/2053-1583/2/1/011001
) / 2D Mater by N Gillgren (2015) -
Castellanos-Gomez, A. et al. Deterministic transfer of two-dimensional materials by all-dry viscoelastic stamping. 2D Mater. 1, 011002 (2014).
(
10.1088/2053-1583/1/1/011002
) / 2D Mater by A Castellanos-Gomez (2014)
Dates
Type | When |
---|---|
Created | 10 years, 3 months ago (May 15, 2015, 10:35 a.m.) |
Deposited | 2 years, 3 months ago (May 18, 2023, 7:45 p.m.) |
Indexed | 5 hours, 7 minutes ago (Aug. 21, 2025, 2:31 p.m.) |
Issued | 10 years, 3 months ago (May 18, 2015) |
Published | 10 years, 3 months ago (May 18, 2015) |
Published Online | 10 years, 3 months ago (May 18, 2015) |
Published Print | 10 years, 1 month ago (July 1, 2015) |
@article{Li_2015, title={Quantum oscillations in a two-dimensional electron gas in black phosphorus thin films}, volume={10}, ISSN={1748-3395}, url={http://dx.doi.org/10.1038/nnano.2015.91}, DOI={10.1038/nnano.2015.91}, number={7}, journal={Nature Nanotechnology}, publisher={Springer Science and Business Media LLC}, author={Li, Likai and Ye, Guo Jun and Tran, Vy and Fei, Ruixiang and Chen, Guorui and Wang, Huichao and Wang, Jian and Watanabe, Kenji and Taniguchi, Takashi and Yang, Li and Chen, Xian Hui and Zhang, Yuanbo}, year={2015}, month=may, pages={608–613} }