SPECIAL TOPIC: TWO-DIMENSIONAL MATERIALS |
|
|
|
|
|
Research Progress on Fabrication of Two-dimensional Black Phosphorus and Relevant Optoelectronic Devices |
WANG Huide, FAN Taojian, XIE Zhongjian, ZHANG Han
|
SZU-NUS Collaborative Innovation Center for Optoelectronic Science and Technology, Shenzhen 518060 |
|
|
Abstract Black phosphorus,which has been widely concerned by researchers in recent years, has lots of excellent properties such as direct band gap and unique anisotropic structure. This paper summarizes the fabrication of two-dimensional black phospho-rus, focusing on unique non-linear optical properties of black phosphorus, anisotropic optical properties and application in optoelectronic devices. Finally, prospects for application of black phosphorus and some problems which need to be solved are summarized.
|
Published: 10 May 2017
Online: 2018-05-03
|
|
|
|
[1] |
Xia F.Two-dimensional material nanophotonics[J]. Nat Photon,2014,8(12):899.
|
[2] |
Lee C, Wei X, Kysar J W, et al.Measurement of the elastic properties and intrinsic strength of monolayer graphen[J]. Science,2008,321(5887):385.
|
[3] |
Geim A K, Novoselov K S.The rise of graphene[J]. Nat Mater,2007,6(3):183.
|
[4] |
Fleurence A, Friedlein R, Ozaki T, et al.Experimental evidence for epitaxial silicene on diboride thin film[J]. Phys Rev Lett,2012,108(24):245501.
|
[5] |
Alessro M, Carlo G, Daniele C, et al.Nanostructures: Hindering the oxidation of silicene with non-ractive encapsulation[J]. Adv Funct Mater,2013,23(35):4339.
|
[6] |
Radisavljevic B, Radenovic A, Brivio J,et al.Single-layer MoS2 transistors[J].Nat Nanotechnol,2011,6(3):147.
|
[7] |
Ye Guojun.Superconductivity in β-MNCl system and growth of black phosphorus single crystal[D].Hefei:University of Science and Techno-logy of China,2016(in Chinese).叶国俊. β-MNCl体系超导电性与黑磷单晶生长研究[D]. 合肥:中国科学技术大学,2016.
|
[8] |
Castellanosgomez A, Vicarelli L, Prada E, et al.Isolation and cha-racterization of few-layer black phosphorus[J]. 2d Materials,2014,1(2):025001.
|
[9] |
Brown A, Rundqvist S.Refinement of the crystal structure of black phosphorus[J]. Acta Crystallogr,1965,19(4):684.
|
[10] |
Slater J C, Koster G F, Wood J H.Symmetry and free electron properties of the gallium energy bands[J]. Phys Rev,1962,126(4):1307.
|
[11] |
Cartz L, Srinivasa S R, Riedner R J, et al.Effect of pressure on bonding in black phosphorus[J]. J Chem Phys,1979,71(4):1718.
|
[12] |
Liu H, Neal A T, et al.Phosphorene: An unexplored 2D semiconductor with a high hole mobility[J]. ACS Nano,2014,8(4):4033.
|
[13] |
Qiao J, Kong X, Hu Z X, et al.High-mobility transport anisotropy and linear dichroism in few-layer black phosphorus[J]. Nat Commun,2014,5:4475.
|
[14] |
Li L, Yu Y, Ye G J, et al.Black phosphorus field-effect transistors[J]. Nat Nanotechnol,2014, 9(5):372.
|
[15] |
Tran V, Soklaski R, Liang Y, et al.Layer-controlled band gap and anisotropic excitons in few-layer black phosphorus[J]. Phys Rev B,2014,89(23):817.
|
[16] |
Wang X, Jones A M, Seyler K L, et al.Highly anisotropic and robust excitons in monolayer black phosphorus[J]. Nat Nanotechnol,2014,10(6):517.
|
[17] |
Kong L, Qin Z, Xie G, et al.Black phosphorus as broadband saturable absorber for pulsed lasers from 1 μm to 2.7 μm wavelength[J]. Laser Phys Lett,2016,13(4):045801.
|
[18] |
Hao C, Yang B, Wen F, et al.Flexible all-solid-state supercapacitors based on liquid-exfoliated back-phosphorus nanoflakes[J]. Adv Mater,2016,28(16):3194.
|
[19] |
Tao W, Zhu X, Yu X, et al.Black phosphorus nanosheets as a robust delivery platform for cancer theranostics[J]. Adv Mater,2017,29(1):1603276.
|
[20] |
Jamieson J C.Crystal structures adopted by black phosphorus at high pressures[J]. Science, 1963,139(3561):1291.
|
[21] |
Maruyama Y, Suzuki S, Kobayashi K, et al.Synthesis and some properties of black phosphorus single crystals[J]. Physica B+C,1981,105(s1-3):99.
|
[22] |
Shirotani I.Growth of large aingle crystals of black phosphorus at high pressures and temperatures, and its electrical properties[J]. Mol Cryst Liq Cryst,1982,86(1):203.
|
[23] |
Endo S, Akahama Y, Terada S, et al.Growth of large single crystals of black phosphorus under high pressure[J]. Jpn J Appl Phys,1982,21(8):L482.
|
[24] |
Park C M, Sohn H J.Black phosphorus and its composite for lithium rechargeable batteries[J]. Cheminform,2010,38(46):1.
|
[25] |
Brent J R, Savjani N, Lewis E A, et al.Production of few-layer phosphorene by liquid exfoliation of black phosphorus.[J]. Chem Commun,2014,50(87):13338.
|
[26] |
Kang J, Wood J D, Wells S A, et al.Solvent exfoliation of electro-nic-grade, two-dimensional black phosphorus[J]. ACS Nano,2015,9(4):3596.
|
[27] |
Yasaei P, Kumar B, Foroozan T, et al.High-quality black phosphorus atomic layers by liquid-phase exfoliation[J]. Adv Mater,2015,27(11):1887.
|
[28] |
Hanlon D, Backes C, Doherty E, et al.Liquid exfoliation of solvent-stabilized few-layer black phosphorus for applications beyond electronics[J]. Nat Commun,2015,6:8563.
|
[29] |
Guo Z, Zhang H, Lu S, et al.From black phosphorus to phosphorene: Basic solvent exfoliation, evolution of Raman scattering, and applications to ultrafast photonics[J]. Adv Funct Mater,2015, 25(45):6996.
|
[30] |
Zhang X, Xie H, Liu Z, et al.Black phosphorus quantum dots[J]. Angew Chem Int Ed,2015, 127(12):3653.
|
[31] |
Sun Z, Xie H, Tang S, et al.Ultrasmall black phosphorus quantum dots: Synthesis and use as photothermal agents[J]. Angew Chem Int Ed,2015,127(39):11526.
|
[32] |
Lu S B, Miao L L, Guo Z N, et al.Broadband nonlinear optical response in multi-layer black phosphorus: An emerging infrared and mid-infrared optical material[J]. Opt Express,2015,23(9):11183.
|
[33] |
Engel M, Steiner M, Avouris P.Black phosphorus photodetector for multispectral, high-resolution imaging[J]. Nano Lett,2014,14(11):6414.
|
[34] |
Low T, Engel M, Steiner M, et al.Origin of photoresponse in black phosphorus phototransistors[J]. Phys Rev B,2014,90(8):081408.
|
[35] |
Xu Y, Wang Z, Guo Z, et al.Solvothermal synthesis and ultrafast photonics of black phosphorus quantum dots[J]. Adv Opt Mater,2016,4(8):1223.
|
|
|
|