Special Issue:
TOPICAL REVIEW — Low-dimensional nanostructures and devices
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TOPICAL REVIEW—Low-dimensional nanostructures and devices |
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Graphene applications in electronic and optoelectronic devices and circuits |
Wu Hua-Qiang (吴华强)a b, Linghu Chang-Yang (令狐昌洋)a, Lü Hong-Ming (吕宏鸣)a, Qian He (钱鹤)a b |
a Institute of Microelectronics, Tsinghua University, Beijing 100084, China;
b Tsinghua National Laboratory for Information Science and Technology (TNList), Beijing 100084, China |
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Abstract Recent progress of research for graphene applications in electronic and optoelectronic devices is reviewed, and recent developments in circuits based on graphene devices are summarized. The bandgap-mobility tradeoff inevitably constrains the application of graphene for the conventional field-effect transistor (FET) devices in digital applications. However, this shortcoming has not dampened the enthusiasm of the research community toward graphene electronics. Aside from high mobility, graphene offers numerous other amazing electrical, optical, thermal, and mechanical properties that continually motivate innovations.
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Received: 27 July 2013
Revised: 15 August 2013
Accepted manuscript online:
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PACS:
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81.05.ue
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(Graphene)
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Corresponding Authors:
Wu Hua-Qiang
E-mail: wuhq@mail.tsinghua.edu.cn
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Cite this article:
Wu Hua-Qiang (吴华强), Linghu Chang-Yang (令狐昌洋), Lü Hong-Ming (吕宏鸣), Qian He (钱鹤) Graphene applications in electronic and optoelectronic devices and circuits 2013 Chin. Phys. B 22 098106
|
[1] |
Novoselov K S, Geim A K, Morozov S V, Jiang D, Zhang Y, Dubonos S V, Grigorieval I V and Firsov A A 2004 Science 306 666
|
[2] |
Lee C, Wei X D, Kysar J W and Hone J 2008 Science 321 385
|
[3] |
Balandin A A 2011 Nat. Mater. 10 569
|
[4] |
Bunch J S, Verbridge S S, Alden J S, Zande A M, Parpia J M, Craighead H G and McEuen P L 2008 Nano Lett. 8 2458
|
[5] |
Morozov S V, Novoselov K S, Katsnelson M I, Schedin F, Elias D C, Jaszczak J A and Geim A K 2008 Phys. Rev. Lett. 100 016602
|
[6] |
Wu Y, Jenkins K A, Valdes-Garcia A, Farmer D B, Zhu Y, Bol A A, Dimitrakopoulos C, Zhu W, Xia F, Avouris P and Lin Y M 2012 Nano Lett. 12 3062
|
[7] |
Xia F, Farmer D B, Lin Y M and Avouris P 2010 Nano Lett. 10 715
|
[8] |
Schwierz F and Pezoldt J 2012 Solid-State and Integrated Circuit Technology (ICSICT) 2012 IEEE 11th International Conference on
|
[9] |
Nair R R, Blake P, Grigorenko A N, Novoselov K S, Booth T J, Stauber T, Peres N M R and Geim A K 2008 Science 320 1308
|
[10] |
Novoselov K S, Fal’ko V I, Colombo L, Gellert P R, Schwab M G and Kim K 2012 Nature 490 192
|
[11] |
Geim A K and Novoselov K S 2007 Nat. Mater. 6 183
|
[12] |
Schwierz F 2010 Nat. Nanotech. 5 487
|
[13] |
Berger C, Song Z, Li T, Li X, Ogbazghi A Y, Feng R, Dai Z, Marchenkov A N, Conrad E H, First P N and Heer W A 2004 J. Phys. Chem. B 108 19912
|
[14] |
Berger C, Song Z, Li X, Wu X, Brown N, Naud C, Mayou D, Li T, Hass J, Marchenkov A N, Conrad E H, First P N and Heer W A 2006 Science 312 1191
|
[15] |
Deng P, Lei T, Lu J, Liu F, Zhang Y, Guo H, Zhang Y, Wang Y and Tang X 2013 Chin. Phys. Lett. 30 018101
|
[16] |
Wang D, Zhang Y M, Lei T, Guo H, Wang R, Tang X and Wang H 2012 Chin. Phys. B 21 038102
|
[17] |
Miao J, Huang L, Gao M, He J, Zhou H, Guo H, Tian Y, Zou Q, Zhang L, Zhang H, Wang Y, Du S, Zhou X, Castro N and Gao H J 2012 Appl. Phys. Lett. 100 093101
|
[18] |
Kim K S, Zhao Y, Jang H, Lee S Y, Kim J M, Kim K S, Ahn J H, Kim P, Choi J Y and Hong B H 2009 Nature 457 706
|
[19] |
Li X, Cai W, An J, Kim S, Nah J, Yang D, Piner R, Velamakanni A, Jung I, Tutuc E, Banerjee S K, Colombo L and Ruoff R S 2009 Science 324 1312
|
[20] |
Wang W, Liang C, Li T, Yang H, Lu N and Wang Y 2013 Chin. Phys. Lett. 30 028102
|
[21] |
Sutter P, Sadowski J T and Sutter E 2009 Phys. Rev. B 80 245411
|
[22] |
Xiao K, Wu H, Lv H, Wu X and Qian H 2013 Nanoscale 5 5524
|
[23] |
Gao L, Ren W, Xu H, Jin L, Wang Z, Ma T, Ma L, Zhang Z, Fu Q, Peng L M, Bao X and Cheng H 2012 Nat. Commun. 3 699
|
[24] |
Li X, Zhu Y, Cai W, Borysiak M, Han B, Chen D, Piner R, Colombo L and Ruoff R S 2009 Nano Lett. 9 4359
|
[25] |
Hsu A, Wang H, Shin Y C, Mailly B, Zhang X, Yu L, Shi Y, Lee Y H, Dubey M, Kim K K, Kong J and Palacios T 2013 Proc. IEEE 101 1638
|
[26] |
Wu Y, Farmer D B, Xia F and Avouris P 2013 Proc. IEEE 101 1620
|
[27] |
Cheng R, Bai J, Liao L, Zhou H, Chen Y, Liu L, Lin Y C, Jiang S, Huang Y and Duan X 2012 Proc. Nat. Acad. Sci. USA 109 11588
|
[28] |
Lemme M C, Echtermeyer T J, Baus M and Kurz H 2007 Electr. Dev. Lett. IEEE 28 282
|
[29] |
Meric I, Baklitskaya N, Kim P and Shepard K L 2008 IEDM
|
[30] |
Lin Y, Jenkins K A, Valdes-Garcia A, Small J P, Farmer D B and Avouris P 2008 Nano Lett. 9 422
|
[31] |
Moon J S, Curtis D, Hu M, Wong D, McGuire C, Campbell P M, Jernigan G, Tedesco J L, VanMil B, Myers-Ward R, Eddy C and Gaskill D K 2009 Electr. Dev. Lett. 30 650
|
[32] |
Lin Y M, Dimitrakopoulos C, Jenkins K A, Farmer D B, Chiu H Y, Grill A and Avouris P 2010 Science 327 662
|
[33] |
Liao L, Lin Y, Bao M, Cheng R, Bai J, Liu Y, Qu Y, Wang K L, Huang Y and Duan X 2010 Nature 467 305
|
[34] |
Wu Y, Lin Y, Bol A A, Jenkins K A, Xia F, Farmer D B, Zhu Y and Avouris P 2011 Nature 472 74
|
[35] |
Robinson J A, LaBella M, Zhu M, Hollander M, Kasarda R, Hughes Z, Trumbull K, Cavalero R and Snyder D 2011 Appl. Phys. Lett. 98 053103
|
[36] |
Mayorov A S, Gorbachev R V, Morozov S V, Britnell L, Jalil R, Ponomarenko L A, Blake P, Novoselov K S, Watanabe K, Taniguchi T and Geim A K 2011 Nano Lett. 11 2396
|
[37] |
Lee B, Park S Y, Kim H, Cho K, Vogel E, Kim M, Wallace R and Kim J 2008 Appl. Phys. Lett. 92 203102
|
[38] |
Meric I, Han M Y, Young A F, Ozyilmaz B, Kim P and Shepard K L 2008 Nat. Nano. 3 654
|
[39] |
Rizzi L, Bianchi M, Behnam A, Carrion E, Guerriero E, Polloni L, Pop E and Sordan R 2012 Nano Lett. 12 3948
|
[40] |
Han S, Jenkins K, Garcia A, Franklin A, Bol A and Haensch W 2011 Nano Lett. 11 3690
|
[41] |
Guerriero E, Polloni L, Bianchi M, Behnam A, Carrion E, Rizzi L, Pop E and Sordan R 2013 ACS Nano 7 5588
|
[42] |
Britnell L, Britnell L, Gorbachev R, Jalil R, Belle B, Schedin F, Mishchenko A, Georgiou T, Katsnelson M, Eaves L, Morozov S, Peres N, Leist J, Geim A K, Novoselov K S and Ponomarenko L A 2012 Science 335 947
|
[43] |
Guerriero E, Polloni L, Rizzi L, Bianchi M, Mondello G and Sordan R 2012 Small 8 357
|
[44] |
Wang H, Hsu A, Wu J, Kong J and Palacios T 2010 Electr. Dev. Lett. IEEE 31 906
|
[45] |
Lin Y, Garcia A, Han S, Farmer D, Meric I, Sun Y, Wu Y, Dimitrakopoulos C, Grill A, Avouris P and Jenkins K 2011 Science 332 1294
|
[46] |
Moon J S, Seo H, Antcliffe M, Le D, McGuire C, Schmitz A, Nyakiti L, Gaskill D, Campbell P, Lee K and Asbeck P 2013 Electr. Dev. Lett. IEEE 34 465
|
[47] |
Maas S A 1987 Microwave Theory and Techniques IEEE Transactions on 35 425
|
[48] |
Madan H, Hollander M J, LaBella M, Cavalero R, Snyder D, Robinson J A and Datta S 2012 IEDM
|
[49] |
Habibpour O, Cherednichenko S, Vukusic J, Yhland K and Stake J 2012 Electr. Dev. Lett. IEEE 33 71
|
[50] |
Zhu W, Linghu C, Zhang J, Zhang L, and Yu Z 2012 The International Conference on Simulation of Semiconductor Processes and Devices (SISPAD)
|
[51] |
Lee S, Lee K, Liu C, Kulkarni G and Zhong Z 2012 Nat. Commun. 3 1018
|
[52] |
Naeemi A and James D M 2009 Electron Devices IEEE Transactions on 56 1822
|
[53] |
Chen X, Akinwande D, Lee K, Close G F, Yasuda S, Paul B C, Fujita S, Kong J and Wong H P 2010 Electron Devices IEEE Transactions on 57 3137
|
[54] |
Xia F, Mueller T, Lin Y, Garcia A and Avouris P 2009 Nat. Nano. 4 839
|
[55] |
Echtermeyer T J, Britnell L, Jasnos P K, Lombardo A, Gorbachev R V, Grigorenko A N, Geim A K, Ferrari A C and Novoselov K S 2011 Nat. Commum. 2 458
|
[56] |
Kim K, Choi J Y, Kim T, Cho S H and Chung H J 2011 Nature 479 338
|
[57] |
Pospischil A, Humer M, Furchi M, Guider R, Fromherz T and Mueller T 2013 arXiv:1302.3854
|
[58] |
Liu A S, Jones R, Liao L, Rubio D, Rubin D, Cohen O, Nicolaescu R and Paniccia M 2004 Nature 427 615
|
[59] |
Liu J, Beals M, Pomerene A, Bernardis S, Sun R, Cheng J, Kimerling L C and Michell J 2008 Nat. Photon 2 433
|
[60] |
Liu M, Yin X, Ulin-Avila E, Geng B, Zentgraf T, Ju L, Wang F and Zhang X 2011 Nature 474 64
|
[61] |
Andersen D R 2010 J. Opt. Soc. Am. B 27 818
|
[62] |
Liu X, Du D and Mourou G 1997 IEEE J. Quantum Electron. 33 1706
|
[63] |
Drexler W, Morgner U, Kärtner F X, Pitris C, Boppart S A, Li X D, Ippen E P and Fujimoto J G 1999 Opt. Lett. 24 1221
|
[64] |
Zhang H, Tang D, Knize R J, Zhao L, Bao Q and Loh K P 2010 Appl. Phys. Lett. 96 111112
|
[65] |
Zhao L, Tang D, Zhang H, Wu X, Bao Q and Loh K P 2010 Opt. Lett. 35 3622
|
[66] |
Tan W, Su C, Knize R, Xie G, Li L and Tang D 2010 Appl. Phys. Lett. 96 031106
|
[67] |
Goldstein D 2003 Polarized Light (2nd edn)
|
[68] |
Bao Q, Zhang H, Wang B, Ni Z, Lim C, Wang Y, Yuan D, Tang D and Loh KP 2011 Nat. Photo. 5 411
|
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