欢迎登录材料期刊网

材料期刊网

高级检索

黑磷烯因具有直接带隙和优异的电子迁移率等良好性能,成为一种备受关注的新型二维材料.概述了黑磷烯的制备方法,系统介绍了黑磷烯在场效应晶体管、光电元件、气体传感器及太阳能电池等领域的应用,分析了限制黑磷烯应用的主要因素.最后,展望了黑磷烯未来的发展趋势和应用前景.

参考文献

[1] Geim AK;Novoselov KS.The rise of graphene[J].Nature materials,20073(3):183-191.
[2] Radisavljevic, B.;Radenovic, A.;Brivio, J.;Giacometti, V.;Kis, A..Single-layer MoS2 transistors[J].Nature nanotechnology,20113(3):147-150.
[3] Nilges, T;Kersting, M;Pfeifer, T.A fast low-pressure transport route to large black phosphorus single crystals[J].Journal of Solid State Chemistry,20088(8):1707-1711.
[4] K. S. Novoselov;D. Jiang;F. Schedin;T. J. Booth;V. V. Khotkevich;S. V. Morozov;A. K. Geim.Two-dimensional atomic crystals[J].Proceedings of the National Academy of Sciences of the United States of America,200530(30):10451-10453.
[5] Valeria Nicolosi;Manish Chhowalla;Mercouri G. Kanatzidis;Michael S. Strano;Jonathan N. Coleman.Liquid Exfoliation of Layered Materials[J].Science,2013Jun.21 TN.6139(Jun.21 TN.6139):1420-1420.
[6] Michele Buscema;Dirk J. Groenendijk;Sofya I. Blanter;Gary A. Steele;Herre S. J. van der Zant;Andres Castellanos-Gomez.Fast and Broadband Photoresponse of Few-Layer Black Phosphorus Field-Effect Transistors[J].Nano letters,20146(6):3347-3352.
[7] Steven P. Koenig;Rostislav A. Doganov;Hennrik Schmidt;A. H. Castro Neto;Barbaros Ozyilmaz.Electric field effect in ultrathin black phosphorus[J].Applied physics letters,201410(10):103106-1-103106-4.
[8] Engel, Michael;Steiner, Mathias;Avouris, Phaedon.Black Phosphorus Photodetector for Multispectral, High-Resolution Imaging[J].Nano letters,201411(11):6414-6417.
[9] Wu, Jing;Koon, Gavin Kok Wai;Xiang, Du;Han, Cheng;Toh, Chee Tat;Kulkarni, Eeshan S.;Verzhbitskiy, Ivan;Carvalho, Alexandra;Rodin, Aleksandr S.;Koenig, Steven P.;Eda, Goki;Chen, Wei;Castro Neto, A. H.;Oezyilmaz, Barbaros.Colossal Ultraviolet Photoresponsivity of Few-Layer Black Phosphorus[J].ACS nano,20158(8):8070-8077.
[10] F.SCHEDIN;A.K.GEIM;S.V.MOROZOV.Detection of individual gas molecules adsorbed on graphene[J].Nature materials,20079(9):652-655.
[11] Liangzhi Kou;Aijun Du;Changfeng Chen.Strain engineering of selective chemical adsorption on monolayer MoS2[J].Nanoscale,201410(10):5156-5161.
[12] Perkins, F.K.;Friedman, A.L.;Cobas, E.;Campbell, P.M.;Jernigan, G.G.;Jonker, B.T..Chemical vapor sensing with monolayer MoS_2[J].Nano letters,20132(2):668-673.
[13] Liangzhi Kou;Thomas Frauenheim;Changfeng Chen.Phosphorene as a Superior Gas Sensor: Selective Adsorption and Distinct I-V Response[J].Journal of physical chemistry letters,201415(15):2675-2681.
[14] Abbas, Ahmad N.;Liu, Bilu;Chen, Liang;Ma, Yuqiang;Cong, Sen;Aroonyadet, Noppadol;Koepf, Marianne;Nilges, Tom;Zhou, Chongwu.Black Phosphorus Gas Sensors[J].ACS nano,20155(5):5618-5624.
[15] Gomez De Arco, L.;Zhang, Y.;Schlenker, C.W.;Ryu, K.;Thompson, M.E.;Zhou, C..Continuous, highly flexible, and transparent graphene films by chemical vapor deposition for organic photovoltaics[J].ACS nano,20105(5):2865-2873.
[16] Yu Wang;Shi Wun long;Xiang Fan Xu;Barbaras OEzyilmaz;Kian Ping Loh.Interface Engineering of Layer-by-Layer Stacked Graphene Anodes for High-Performance Organic Solar Cells[J].Advanced Materials,201113(13):1514-1518.
[17] Xing Gu;Wei Cui;Hai Li;Zhongwei Wu;Zhiyuan Zeng;Shuit-Tong Lee;Hua Zhang;Baoquan Sun.A Solution-Processed Hole Extraction Layer Made from Ultrathin MoS_2 Nanosheets for Efficient Organic Solar Cells[J].Advanced energy materials,201310(10):1262-1268.
[18] Jun Dai;Xiao Cheng Zeng.Bilayer Phosphorene: Effect of Stacking Order on Bandgap and Its Potential Applications in Thin-Film Solar Cells[J].Journal of physical chemistry letters,20147(7):1289-1293.
[19] Scholes GD.Controlling the optical properties of inorganic nanoparticles[J].Advanced functional materials,20088(8):1157-1172.
[20] Zhang, Xiao;Xie, Haiming;Liu, Zhengdong;Tan, Chaoliang;Luo, Zhimin;Li, Hai;Lin, Jiadan;Sun, Liqun;Chen, Wei;Xu, Zhichuan;Xie, Linghai;Huang, Wei;Zhang, Hua.Black Phosphorus Quantum Dots[J].Angewandte Chemie,201512(12):3653-3657.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%