Search

Article

x

留言板

尊敬的读者、作者、审稿人, 关于本刊的投稿、审稿、编辑和出版的任何问题, 您可以本页添加留言。我们将尽快给您答复。谢谢您的支持!

姓名
邮箱
手机号码
标题
留言内容
验证码

Process in preparation of metal-catalyzed graphene

Yu Hai-Ling Zhu Jia-Qi Cao Wen-Xin Han Jie-Cai

Citation:

Process in preparation of metal-catalyzed graphene

Yu Hai-Ling, Zhu Jia-Qi, Cao Wen-Xin, Han Jie-Cai
PDF
Get Citation

(PLEASE TRANSLATE TO ENGLISH

BY GOOGLE TRANSLATE IF NEEDED.)

  • Graphene, which is regarded as a new carbon material, has attracted much attention of scientists. Graphene holds the promise for applications in optoelectronics and microelectronics, owing to many unique physical and chemical properties. The large-scale applications are restricted by controllable synthesis of large-size graphene. In this paper we present the advantages and disadvantages of preparation processes of graphene. The recent advances in the process of metal-catalyzed graphene in terms of lay number control and large area synthesis are discussed. The graphene prepared by metal-catalyzed solid carbon source has large area and high quality and is thin and homogeneous. We review the latest progress in graphene transformation mechanism, point out the limitations of current study and prospect the future development in the graphene transformation mechanism.
    • Funds: Project supported by the National Natural Science Foundation of China (Grant Nos. 51222205, 51072039), the Program for New Century Excellent Talents in University (Grant No. NCET-10-0070), and the Ph.D. Programs Foundation of Ministry of Education of China (Grant No. 20122302110035).
    [1]

    Novoselov K 2011 Rev. Mod. Phys. 83 837

    [2]

    Novoselov K 2004 Science 306 66

    [3]

    Peierls R 1935 Annals de l'I. H. P. 5 p177

    [4]

    Landau L 1937 Phys. Z. Sowjetunion 11 p26

    [5]

    Stoller M D, Park S, Zhu Y, An J, Ruoff R S 2008 Nano Lett. 8 3498

    [6]

    Nair R R, Blake P, Grigorenko A N, Novoselov K S, Booth T J, Stauber T, Peres N M R, Geim A K 2008 Science 320 1308

    [7]

    Stauber T, Peres N M R, Geim A K 2008 Phys. Rev. B 78 085418

    [8]

    Lee C, Wei X, Kysar J W, Hone J 2008 Science 321 385

    [9]

    Balandin A A, Ghosh S, Bao W Z, Calizo I, Teweldebrhan D, Miao F, Lau C N 2008 Nano Lett. 8 902

    [10]

    Areshkin D A, White C T 2007 Nano Lett. 7 3253

    [11]

    Geim A K, Novoselov K S 2007 Nat. Mater. 6 183

    [12]

    Wei D, Liu Y 2010 Adv. Mater. 22 3225

    [13]

    Geim A K 2009 Science 324 1530

    [14]

    Singh V, Joung D, Zhai L, Das S, Khondaker S I, Seal S 2011 Prog. Mater Sci. 56 1178

    [15]

    Stankovich S, Dikin D A, Piner R D, Kohlhaas K A, Kleinhammes A, Jia Y, Wu Y, Nguyen S T, Ruoff R S 2007 Carbon 45 1558

    [16]

    Park S, Ruoff R S 2009 Nat. Nanotechnol. 4 217

    [17]

    Yang X Y, Dou X, Rouhanipour A, Zhi L J, Rader H J, Mullen K 2008 JACS 130 4216

    [18]

    Berger C 2006 Science 312 1191

    [19]

    Weatherup R S, Bayer B C, Blume R, Ducati C, Baehtz C, Schlögl R, Hofmann S 2011 Nano Lett. 11 4154

    [20]

    Huang H, Chen W, Chen S, Wee A T S 2008 Acs Nano 2 2513

    [21]

    Berger C, Song Z M, Li T B, Li X B, Ogbazghi A Y, Feng R, Dai Z T, Marchenkov A N, Conrad E H, First P N, de Heer W A 2004 J. Phys. Chem. B 108 19912

    [22]

    Emtsev K V, Bostwick A, Horn K, Jobst J, Kellogg G L, Ley L, McChesney J L, Ohta T, Reshanov S A, Rohrl J, Rotenberg E, Schmid A K, Waldmann D, Weber H B, Seyller T 2009 Nat. Mater. 8 203

    [23]

    Pan Y, Zhang H G, Shi D X, Sun J T, Du S X, Liu F, Gao H J 2009 Adv. Mater. 21 2739

    [24]

    Zhang H, Fu Q, Cui Y, Tan D L, Bao X H 2009 Chin. Sci. Bull. 1860 (in Chinese) [张辉, 傅强, 崔义, 谭大力, 包信和 2009 科学通报 1860]

    [25]

    Sutter P W, Flege J I, Sutter E A 2008 Nat. Mater. 7 406

    [26]

    Campos-Delgado J, Romo-Herrera J M, Jia X T, Cullen D A, Muramatsu H, Kim Y A, Hayashi T, Ren Z F, Smith D J, Okuno Y, Ohba T, Kanoh H, Kaneko K, Endo M, Terrones H, Dresselhaus M S, Terrones M 2008 Nano Lett. 8 2773

    [27]

    Di C A, Wei D C, Yu G, Liu Y Q, Guo Y L, Zhu D B 2008 Adv. Mater. 20 3289

    [28]

    Shang N G, Papakonstantinou P, McMullan M, Chu M, Stamboulis A, Potenza A, Dhesi S S, Marchetto H 2008 Adv. Funct. Mater. 18 3506

    [29]

    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, Ruoff R S 2009 Science 324 1312

    [30]

    Bae S, Kim H, Lee Y, Xu X F, Park J S, Zheng Y, Balakrishnan J, Lei T, Kim H R, Song Y I, Kim Y J, Kim K S, Ozyilmaz B, Ahn J H, Hong B H, Iijima S 2010 Nat. Nanotechnol. 5 574

    [31]

    Chen Z P, Ren W C, Liu B L, Gao L B, Pei S F, Wu Z S, Zhao J P, Cheng H M 2010 Carbon 48 3543

    [32]

    Wei D C, Liu Y Q, Zhang H L, Huang L P, Wu B, Chen J Y, Yu G 2009 JACS 131 11147

    [33]

    Ren W C, Gao L B, Ma L P, Cheng H M 2011 New Carbon Mater. 71 (in Chinese) [任文才 高力波, 马来鹏, 成会明 2011 新型炭材料 71]

    [34]

    Juang Z Y, Wu C Y, Lo C W, Chen W Y, Huang C F, Hwang J C, Chen F R, Leou K C, Tsai C H 2009 Carbon 47 2026

    [35]

    Hofrichter J, Szafranek B u N, Otto M, Echtermeyer T J, Baus M, Majerus A, Geringer V, Ramsteiner M, Kurz H 2010 Nano Lett. 10 36

    [36]

    Fujita J I, Ueki R, Miyazawa Y, Ichihashi T 2009 J. Vac. Sci. Technol. B 27 3063

    [37]

    Zheng M, Takei K, Hsia B, Fang H, Zhang X, Ferralis N, Ko H, Chueh Y L, Zhang Y, Maboudian R, Javey A 2010 Appl. Phys. Lett. 96 063110

    [38]

    Rodriguez Manzo J A, Pham Huu C, Banhart F 2011 Acs Nano 5 1529

    [39]

    Orofeo C M, Ago H, Hu B, Tsuji M 2011 Nano Research 4 531

    [40]

    Ji H X, Hao Y F, Ren Y J, Charlton M, Lee W H, Wu Q Z, Li H F, Zhu Y W, Wu Y P, Piner R, Ruoff R S 2011 Acs Nano 5 7656

    [41]

    Liu N, Fu L, Dai B, Yan K, Liu X, Zhao R, Zhang Y, Liu Z 2011 Nano Lett. 11 297

    [42]

    Sun Z, Yan Z, Yao J, Beitler E, Zhu Y, Tour J M 2010 Nature 468 549

    [43]

    Perdigão L S M A, Sabki S N, Garfitt J M, Capiod P, Beton P H 2011 J. Phys. Chem. C 115 7472

    [44]

    Garaj S, Hubbard W, Golovchenko J A 2010 Appl. Phys. Lett. 97 183103

    [45]

    Kaplas T, Sharma D, Suirko, Y 2012 Carbon 50 1503

    [46]

    Sun J, Cole M, Ahmad S, Backe O, Ive T, Loffler M, Lindvall N, Olsson E, Teo K, Liu J, Larsson A, Yurgens A, Haglund A 2011 IEEE T. Semiconduct. M 99 1

    [47]

    Sun J, Lindvall N, Cole M, Teo K, Yurgens A 2011 Appl. Phys. Lett. 98 252107

    [48]

    Jerng S K, Lee J H, Yu D S, Kim Y S, Ryou J, Hong S, Kim C, Yoon S, Chun S H 2012 J. Phys. Chem. C 116 7380

    [49]

    Tang J, Kang C Y, Li L M, Yan W S, Wei S Q, Xu P S 2011 Physica E 43 1415

    [50]

    Chen J Y, Wen Y G, Guo Y L, Wu B, Huang L P, Xue Y Z, Geng D C, Wang D, Yu G, Liu Y Q 2011 J. Am. Chem. Soc. 133 17548

    [51]

    Li X S, Cai W W, Colombo L, Ruoff R S 2009 Nano Lett. 9 4268

    [52]

    Shahil K M F, Balandin A A 2012 Nano Lett. 12 861

    [53]

    Katsnelson M I 2007 Mater. Today 10 20

    [54]

    Rao C N R, Biswas K, Subrahmanyam K S, Govindaraj A 2009 J. Mater. Chem. 19 2457

    [55]

    Seyller T, Bostwick A, Emtsev K V, Horn K, Ley L, McChesney J L, Ohta T, Riley J D, Rotenberg E, Speck F 2008 Phys. Status Solidi B 245 1436

    [56]

    Hass J, de Heer W A, Conrad E H 2008 J. Phys. Condensed Matter 20 323202

    [57]

    Unarunotai S, Murata Y, Chialvo C E, Kim H S, MacLaren S, Mason N, Petrov I, Rogers J A 2009 Appl. Phys. Lett. 95 202101

    [58]

    Rollings E, Gweon G, Zhou S, Mun B, McChesney J, Hussain B, Fedorov A, First P, Deheer W, Lanzara A 2006 J. Phys. Chem. Solids 67 2172

    [59]

    Camara N, Rius G, Huntzinger J R, Tiberj A, Mestres N, Godignon P, Camassel J 2008 Appl. Phys. Lett. 93 123503

    [60]

    Kim K J, Lee H, Choi J H, Lee H K, Kang T H, Kim B, Kim S J 2008 Phys. Condens Mat. 20 225017

    [61]

    Sutter E, Acharya D P, Sadowski J T, Sutter P 2009 Appl. Phys. Lett. 94 133101

    [62]

    Sutter E, Albrecht P, Sutter P 2009 Appl. Phys. Lett. 95 133109

    [63]

    Moritz W, Wang B, Bocquet M L, Brugger T, Greber T, Wintterlin J, Gunther S 2010 Phys. Rev. Lett. 104 136102

    [64]

    Kaplas T, Sharma D, Suirko Y 2012 Carbon 50 1503

    [65]

    Kim K S, Zhao Y, Jang H, Lee S Y, Kim J M, Kim K S, Ahn J H, Kim P, Choi J Y, Hong B H 2009 Nature 457 706

    [66]

    Li X S, Zhu Y W, Cai W W, Borysiak M, Han B Y, Chen D, Piner R D, Colombo L, Ruoff R S 2009 Nano Lett. 9 4359

    [67]

    Gao L, Ren W, Zhao J, Ma L-P, Chen Z, Cheng H-M 2010 Appl. Phys. Lett. 97 183109

    [68]

    Bhaviripudi S, Jia X T, Dresselhaus M S, Kong J 2010 Nano Lett. 10 4128

    [69]

    Cai W W, Zhu Y W, Li X S, Piner R D, Ruoff R S 2009 Appl. Phys. Lett. 95 123115

    [70]

    Reina A, Jia X T, Ho J, Nezich D, Son H B, Bulovic V, Dresselhaus M S, Kong J 2009 Nano Lett. 9 30

    [71]

    Wintterlin J, Bocquet M L 2009 Surf. Sci. 603 1841

    [72]

    Dreyer D R, Ruoff R S, Bielawski C W 2010 Angew. Chem. Int. Edit. 49 9336

    [73]

    Compton O C, Nguyen S T 2010 Small 6 711

    [74]

    Becerril H A, Mao J, Liu Z, Stoltenberg R M, Bao Z, Chen Y 2008 Acs Nano 2 463

    [75]

    Dato A, Radmilovic V, Lee Z, Phillips J, Frenklach M 2008 Nano Lett. 8 2012

    [76]

    Wu Z S, Ren W, Gao L, Liu B, Jiang C, Cheng H M 2009 Carbon 47 493

    [77]

    Schneider J J 2011 Chemcatchem 3 1119

    [78]

    Saenger K L, Tsang J C, Bol A A, Chu J O, Grill A, Lavoie C 2010 Appl. Phys. Lett. 96 153105

    [79]

    Somani P R, Somani S P, Umeno M 2006 Chem. Phys. Lett. 430 56

    [80]

    Andersson O E, Prasad B L V, Sato H, Enoki T, Hishiyama Y, Kaburagi Y, Yoshikawa M, Bandow S 1998 Phys. Rev. B 58 16387

    [81]

    Cai W W, Piner R D, Stadermann F J, Park S, Shaibat M A, Ishii Y, Yang D X, Velamakanni A, An S J, Stoller M, An J H, Chen D M, Ruoff R S 2008 Science 321 1815

    [82]

    Chae S J, Gunes F, Kim K K, Kim E S, Han G H, Kim S M, Shin H J, Yoon S M, Choi J Y, Park M H, Yang C W, Pribat D, Lee Y H 2009 Adv. Mater. 21 2328

    [83]

    Terasawa T, Saiki K 2012 Carbon 50 869

    [84]

    Gao J H, Fujita D, Xu M S, Onishi K, Miyamoto S 2010 Acs Nano 4 1026

    [85]

    Rummeli M H, Bachmatiuk A, Scott A, Borrnert F, Warner J H, Hoffman V, Lin J H, Cuniberti G, Buchner B 2010 Acs Nano 4 4206

    [86]

    Gao L, Guest J R, Guisinger N P 2010 Nano Lett. 10 3512

    [87]

    Yazyev O V, Louie S G 2010 Nat. Mater. 9 806

    [88]

    Meng L, Sun Q, Wang J, Ding F 2012 J. Phys. Chem. C 116 6097

    [89]

    Nakajima T, Shintani K 2009 J. Appl. Phys. 106 114305

    [90]

    Giovannetti G, Khomyakov P A, Brocks G, Karpan V M, van den Brink J, Kelly P J 2008 Phys. Rev. Lett. 101 026803

    [91]

    Saadi S, Abild-Pedersen F, Helveg S, Sehested J, Hinnemann B, Appel C C, Norskov J K 2010 J. Phys. Chem. C 114 11221

    [92]

    Xu Z, Buehler M J 2010 J. Phys. Condensed Matter 22 485301

    [93]

    Yu Q K, Jauregui L A, Wu W, Colby R, Tian J F, Su Z H, Cao H L, Liu Z H, Pandey D, Wei D G, Chung T F, Peng P, Guisinger N P, Stach E A, Bao J M, Pei S S, Chen Y P 2011 Nat. Mater. 10 443

    [94]

    Li X, Magnuson C W, Venugopal A, Tromp R M, Hannon J B, Vogel E M, Colombo L, Ruoff R S 2011 J. Am. Chem. Soc. 133 2816

    [95]

    Gao L, Ren W, Xu H, Jin L, Wang Z, Ma T, Ma L P, Zhang Z, Fu Q, Peng L M, Bao X, Cheng H M 2012 Nat. Comms. 3 699

    [96]

    Pan Y, Zhang H G, Shi D X, Sun J T, Du S X, Liu F, Gao H J 2009 Adv. Mater. 21 2777

    [97]

    Chen X, Liu S, Liu L, Liu X, Liu X, Wang L 2012 Appl. Phys. Lett. 100 163106

    [98]

    Allen M J, Tung V C, Kaner R B 2010 Chem. Rev. 110 132

    [99]

    Fu Q, Bao X H 2009 Chin. Sci. Bull. 2657 (in Chinese) [傅强, 包信和 2009 科学通报 2657]

    [100]

    Yang Q H 2011 New Carbon Mater. 1 (in Chinese) [杨全红 2011 新型炭材料 1]

    [101]

    Tan C L, Tan Z B, Ma L, Chen J, Yang F, Qu F M, Liu G T, YangH F, Yang C L, Lv L 2009 Acta Phys. Sin. 58 5726 (in Chinese) [谭长玲, 谭振兵, 马丽, 陈军, 杨帆, 屈凡明, 刘广同, 杨海方, 杨昌黎, 吕力 2009 物理学报 58 5726]

    [102]

    Wang L, Tian L H, Wei G D, Gao F M, Zheng J J, Yang W Y 2011 J. Inorg. Mater. 1009 (in Chinese) [王霖, 田林海, 尉国栋, 高凤梅, 郑金桔, 杨为佑 2011 无机材料学报 1009]

    [103]

    Hu H X, Zhang Z H, Liu X H, Qiu M, Ding K H 2010 Acra Phys. Sin. 59 7156 (in Chinese) [胡海鑫, 张振华, 刘新海, 邱明, 丁开和 2010 物理学报 59 7156]

    [104]

    Hu Y J, Jin J, Zhang H, Wu P, Cai C X 2010 Acta Phys. Chim. Sin. 26 2073 (in Chinese) [胡耀娟, 金娟, 张卉, 吴萍, 蔡称心 2010 物理化学学报 26 2073]

    [105]

    Xu X J, Qin J G, Li Z 2009 Prog. Chem. 79 (in Chinese) [徐秀娟, 秦金贵, 李振 2009 化学进展 79]

    [106]

    Huang H R, Chen J 2009 Carbon techniques 35 (in Chinese) [黄桂荣, 陈建 2009 炭素技术 35]

    [107]

    Ma S Q, Pei L Z, Kang Y J 2009 Modern Physics 44 (in Chinese) [马圣乾, 裴立振, 康英杰 2009 现代物理知识 44]

    [108]

    Yang Q G, Lv W, Yang Y G, Wang M Z 2008 New Carbon Mater. 97 (in Chinese) [杨全红, 吕伟, 杨永岗, 王茂章 2008 新型炭材料 97]

    [109]

    Li X, Zhao W F, Chen G H 2008 Materials Review 48 (in Chinese) [李旭, 赵卫峰, 陈国华 2008 材料导报 48]

    [110]

    Gu Z B, Ji G H, Lu M H 2010 J. Nanjing University of Technology (Natural Science Edition) 105 (in Chinese) [顾正彬, 季根华, 卢明辉 2010 南京工业大学学报 (自然科学版) 105]

  • [1]

    Novoselov K 2011 Rev. Mod. Phys. 83 837

    [2]

    Novoselov K 2004 Science 306 66

    [3]

    Peierls R 1935 Annals de l'I. H. P. 5 p177

    [4]

    Landau L 1937 Phys. Z. Sowjetunion 11 p26

    [5]

    Stoller M D, Park S, Zhu Y, An J, Ruoff R S 2008 Nano Lett. 8 3498

    [6]

    Nair R R, Blake P, Grigorenko A N, Novoselov K S, Booth T J, Stauber T, Peres N M R, Geim A K 2008 Science 320 1308

    [7]

    Stauber T, Peres N M R, Geim A K 2008 Phys. Rev. B 78 085418

    [8]

    Lee C, Wei X, Kysar J W, Hone J 2008 Science 321 385

    [9]

    Balandin A A, Ghosh S, Bao W Z, Calizo I, Teweldebrhan D, Miao F, Lau C N 2008 Nano Lett. 8 902

    [10]

    Areshkin D A, White C T 2007 Nano Lett. 7 3253

    [11]

    Geim A K, Novoselov K S 2007 Nat. Mater. 6 183

    [12]

    Wei D, Liu Y 2010 Adv. Mater. 22 3225

    [13]

    Geim A K 2009 Science 324 1530

    [14]

    Singh V, Joung D, Zhai L, Das S, Khondaker S I, Seal S 2011 Prog. Mater Sci. 56 1178

    [15]

    Stankovich S, Dikin D A, Piner R D, Kohlhaas K A, Kleinhammes A, Jia Y, Wu Y, Nguyen S T, Ruoff R S 2007 Carbon 45 1558

    [16]

    Park S, Ruoff R S 2009 Nat. Nanotechnol. 4 217

    [17]

    Yang X Y, Dou X, Rouhanipour A, Zhi L J, Rader H J, Mullen K 2008 JACS 130 4216

    [18]

    Berger C 2006 Science 312 1191

    [19]

    Weatherup R S, Bayer B C, Blume R, Ducati C, Baehtz C, Schlögl R, Hofmann S 2011 Nano Lett. 11 4154

    [20]

    Huang H, Chen W, Chen S, Wee A T S 2008 Acs Nano 2 2513

    [21]

    Berger C, Song Z M, Li T B, Li X B, Ogbazghi A Y, Feng R, Dai Z T, Marchenkov A N, Conrad E H, First P N, de Heer W A 2004 J. Phys. Chem. B 108 19912

    [22]

    Emtsev K V, Bostwick A, Horn K, Jobst J, Kellogg G L, Ley L, McChesney J L, Ohta T, Reshanov S A, Rohrl J, Rotenberg E, Schmid A K, Waldmann D, Weber H B, Seyller T 2009 Nat. Mater. 8 203

    [23]

    Pan Y, Zhang H G, Shi D X, Sun J T, Du S X, Liu F, Gao H J 2009 Adv. Mater. 21 2739

    [24]

    Zhang H, Fu Q, Cui Y, Tan D L, Bao X H 2009 Chin. Sci. Bull. 1860 (in Chinese) [张辉, 傅强, 崔义, 谭大力, 包信和 2009 科学通报 1860]

    [25]

    Sutter P W, Flege J I, Sutter E A 2008 Nat. Mater. 7 406

    [26]

    Campos-Delgado J, Romo-Herrera J M, Jia X T, Cullen D A, Muramatsu H, Kim Y A, Hayashi T, Ren Z F, Smith D J, Okuno Y, Ohba T, Kanoh H, Kaneko K, Endo M, Terrones H, Dresselhaus M S, Terrones M 2008 Nano Lett. 8 2773

    [27]

    Di C A, Wei D C, Yu G, Liu Y Q, Guo Y L, Zhu D B 2008 Adv. Mater. 20 3289

    [28]

    Shang N G, Papakonstantinou P, McMullan M, Chu M, Stamboulis A, Potenza A, Dhesi S S, Marchetto H 2008 Adv. Funct. Mater. 18 3506

    [29]

    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, Ruoff R S 2009 Science 324 1312

    [30]

    Bae S, Kim H, Lee Y, Xu X F, Park J S, Zheng Y, Balakrishnan J, Lei T, Kim H R, Song Y I, Kim Y J, Kim K S, Ozyilmaz B, Ahn J H, Hong B H, Iijima S 2010 Nat. Nanotechnol. 5 574

    [31]

    Chen Z P, Ren W C, Liu B L, Gao L B, Pei S F, Wu Z S, Zhao J P, Cheng H M 2010 Carbon 48 3543

    [32]

    Wei D C, Liu Y Q, Zhang H L, Huang L P, Wu B, Chen J Y, Yu G 2009 JACS 131 11147

    [33]

    Ren W C, Gao L B, Ma L P, Cheng H M 2011 New Carbon Mater. 71 (in Chinese) [任文才 高力波, 马来鹏, 成会明 2011 新型炭材料 71]

    [34]

    Juang Z Y, Wu C Y, Lo C W, Chen W Y, Huang C F, Hwang J C, Chen F R, Leou K C, Tsai C H 2009 Carbon 47 2026

    [35]

    Hofrichter J, Szafranek B u N, Otto M, Echtermeyer T J, Baus M, Majerus A, Geringer V, Ramsteiner M, Kurz H 2010 Nano Lett. 10 36

    [36]

    Fujita J I, Ueki R, Miyazawa Y, Ichihashi T 2009 J. Vac. Sci. Technol. B 27 3063

    [37]

    Zheng M, Takei K, Hsia B, Fang H, Zhang X, Ferralis N, Ko H, Chueh Y L, Zhang Y, Maboudian R, Javey A 2010 Appl. Phys. Lett. 96 063110

    [38]

    Rodriguez Manzo J A, Pham Huu C, Banhart F 2011 Acs Nano 5 1529

    [39]

    Orofeo C M, Ago H, Hu B, Tsuji M 2011 Nano Research 4 531

    [40]

    Ji H X, Hao Y F, Ren Y J, Charlton M, Lee W H, Wu Q Z, Li H F, Zhu Y W, Wu Y P, Piner R, Ruoff R S 2011 Acs Nano 5 7656

    [41]

    Liu N, Fu L, Dai B, Yan K, Liu X, Zhao R, Zhang Y, Liu Z 2011 Nano Lett. 11 297

    [42]

    Sun Z, Yan Z, Yao J, Beitler E, Zhu Y, Tour J M 2010 Nature 468 549

    [43]

    Perdigão L S M A, Sabki S N, Garfitt J M, Capiod P, Beton P H 2011 J. Phys. Chem. C 115 7472

    [44]

    Garaj S, Hubbard W, Golovchenko J A 2010 Appl. Phys. Lett. 97 183103

    [45]

    Kaplas T, Sharma D, Suirko, Y 2012 Carbon 50 1503

    [46]

    Sun J, Cole M, Ahmad S, Backe O, Ive T, Loffler M, Lindvall N, Olsson E, Teo K, Liu J, Larsson A, Yurgens A, Haglund A 2011 IEEE T. Semiconduct. M 99 1

    [47]

    Sun J, Lindvall N, Cole M, Teo K, Yurgens A 2011 Appl. Phys. Lett. 98 252107

    [48]

    Jerng S K, Lee J H, Yu D S, Kim Y S, Ryou J, Hong S, Kim C, Yoon S, Chun S H 2012 J. Phys. Chem. C 116 7380

    [49]

    Tang J, Kang C Y, Li L M, Yan W S, Wei S Q, Xu P S 2011 Physica E 43 1415

    [50]

    Chen J Y, Wen Y G, Guo Y L, Wu B, Huang L P, Xue Y Z, Geng D C, Wang D, Yu G, Liu Y Q 2011 J. Am. Chem. Soc. 133 17548

    [51]

    Li X S, Cai W W, Colombo L, Ruoff R S 2009 Nano Lett. 9 4268

    [52]

    Shahil K M F, Balandin A A 2012 Nano Lett. 12 861

    [53]

    Katsnelson M I 2007 Mater. Today 10 20

    [54]

    Rao C N R, Biswas K, Subrahmanyam K S, Govindaraj A 2009 J. Mater. Chem. 19 2457

    [55]

    Seyller T, Bostwick A, Emtsev K V, Horn K, Ley L, McChesney J L, Ohta T, Riley J D, Rotenberg E, Speck F 2008 Phys. Status Solidi B 245 1436

    [56]

    Hass J, de Heer W A, Conrad E H 2008 J. Phys. Condensed Matter 20 323202

    [57]

    Unarunotai S, Murata Y, Chialvo C E, Kim H S, MacLaren S, Mason N, Petrov I, Rogers J A 2009 Appl. Phys. Lett. 95 202101

    [58]

    Rollings E, Gweon G, Zhou S, Mun B, McChesney J, Hussain B, Fedorov A, First P, Deheer W, Lanzara A 2006 J. Phys. Chem. Solids 67 2172

    [59]

    Camara N, Rius G, Huntzinger J R, Tiberj A, Mestres N, Godignon P, Camassel J 2008 Appl. Phys. Lett. 93 123503

    [60]

    Kim K J, Lee H, Choi J H, Lee H K, Kang T H, Kim B, Kim S J 2008 Phys. Condens Mat. 20 225017

    [61]

    Sutter E, Acharya D P, Sadowski J T, Sutter P 2009 Appl. Phys. Lett. 94 133101

    [62]

    Sutter E, Albrecht P, Sutter P 2009 Appl. Phys. Lett. 95 133109

    [63]

    Moritz W, Wang B, Bocquet M L, Brugger T, Greber T, Wintterlin J, Gunther S 2010 Phys. Rev. Lett. 104 136102

    [64]

    Kaplas T, Sharma D, Suirko Y 2012 Carbon 50 1503

    [65]

    Kim K S, Zhao Y, Jang H, Lee S Y, Kim J M, Kim K S, Ahn J H, Kim P, Choi J Y, Hong B H 2009 Nature 457 706

    [66]

    Li X S, Zhu Y W, Cai W W, Borysiak M, Han B Y, Chen D, Piner R D, Colombo L, Ruoff R S 2009 Nano Lett. 9 4359

    [67]

    Gao L, Ren W, Zhao J, Ma L-P, Chen Z, Cheng H-M 2010 Appl. Phys. Lett. 97 183109

    [68]

    Bhaviripudi S, Jia X T, Dresselhaus M S, Kong J 2010 Nano Lett. 10 4128

    [69]

    Cai W W, Zhu Y W, Li X S, Piner R D, Ruoff R S 2009 Appl. Phys. Lett. 95 123115

    [70]

    Reina A, Jia X T, Ho J, Nezich D, Son H B, Bulovic V, Dresselhaus M S, Kong J 2009 Nano Lett. 9 30

    [71]

    Wintterlin J, Bocquet M L 2009 Surf. Sci. 603 1841

    [72]

    Dreyer D R, Ruoff R S, Bielawski C W 2010 Angew. Chem. Int. Edit. 49 9336

    [73]

    Compton O C, Nguyen S T 2010 Small 6 711

    [74]

    Becerril H A, Mao J, Liu Z, Stoltenberg R M, Bao Z, Chen Y 2008 Acs Nano 2 463

    [75]

    Dato A, Radmilovic V, Lee Z, Phillips J, Frenklach M 2008 Nano Lett. 8 2012

    [76]

    Wu Z S, Ren W, Gao L, Liu B, Jiang C, Cheng H M 2009 Carbon 47 493

    [77]

    Schneider J J 2011 Chemcatchem 3 1119

    [78]

    Saenger K L, Tsang J C, Bol A A, Chu J O, Grill A, Lavoie C 2010 Appl. Phys. Lett. 96 153105

    [79]

    Somani P R, Somani S P, Umeno M 2006 Chem. Phys. Lett. 430 56

    [80]

    Andersson O E, Prasad B L V, Sato H, Enoki T, Hishiyama Y, Kaburagi Y, Yoshikawa M, Bandow S 1998 Phys. Rev. B 58 16387

    [81]

    Cai W W, Piner R D, Stadermann F J, Park S, Shaibat M A, Ishii Y, Yang D X, Velamakanni A, An S J, Stoller M, An J H, Chen D M, Ruoff R S 2008 Science 321 1815

    [82]

    Chae S J, Gunes F, Kim K K, Kim E S, Han G H, Kim S M, Shin H J, Yoon S M, Choi J Y, Park M H, Yang C W, Pribat D, Lee Y H 2009 Adv. Mater. 21 2328

    [83]

    Terasawa T, Saiki K 2012 Carbon 50 869

    [84]

    Gao J H, Fujita D, Xu M S, Onishi K, Miyamoto S 2010 Acs Nano 4 1026

    [85]

    Rummeli M H, Bachmatiuk A, Scott A, Borrnert F, Warner J H, Hoffman V, Lin J H, Cuniberti G, Buchner B 2010 Acs Nano 4 4206

    [86]

    Gao L, Guest J R, Guisinger N P 2010 Nano Lett. 10 3512

    [87]

    Yazyev O V, Louie S G 2010 Nat. Mater. 9 806

    [88]

    Meng L, Sun Q, Wang J, Ding F 2012 J. Phys. Chem. C 116 6097

    [89]

    Nakajima T, Shintani K 2009 J. Appl. Phys. 106 114305

    [90]

    Giovannetti G, Khomyakov P A, Brocks G, Karpan V M, van den Brink J, Kelly P J 2008 Phys. Rev. Lett. 101 026803

    [91]

    Saadi S, Abild-Pedersen F, Helveg S, Sehested J, Hinnemann B, Appel C C, Norskov J K 2010 J. Phys. Chem. C 114 11221

    [92]

    Xu Z, Buehler M J 2010 J. Phys. Condensed Matter 22 485301

    [93]

    Yu Q K, Jauregui L A, Wu W, Colby R, Tian J F, Su Z H, Cao H L, Liu Z H, Pandey D, Wei D G, Chung T F, Peng P, Guisinger N P, Stach E A, Bao J M, Pei S S, Chen Y P 2011 Nat. Mater. 10 443

    [94]

    Li X, Magnuson C W, Venugopal A, Tromp R M, Hannon J B, Vogel E M, Colombo L, Ruoff R S 2011 J. Am. Chem. Soc. 133 2816

    [95]

    Gao L, Ren W, Xu H, Jin L, Wang Z, Ma T, Ma L P, Zhang Z, Fu Q, Peng L M, Bao X, Cheng H M 2012 Nat. Comms. 3 699

    [96]

    Pan Y, Zhang H G, Shi D X, Sun J T, Du S X, Liu F, Gao H J 2009 Adv. Mater. 21 2777

    [97]

    Chen X, Liu S, Liu L, Liu X, Liu X, Wang L 2012 Appl. Phys. Lett. 100 163106

    [98]

    Allen M J, Tung V C, Kaner R B 2010 Chem. Rev. 110 132

    [99]

    Fu Q, Bao X H 2009 Chin. Sci. Bull. 2657 (in Chinese) [傅强, 包信和 2009 科学通报 2657]

    [100]

    Yang Q H 2011 New Carbon Mater. 1 (in Chinese) [杨全红 2011 新型炭材料 1]

    [101]

    Tan C L, Tan Z B, Ma L, Chen J, Yang F, Qu F M, Liu G T, YangH F, Yang C L, Lv L 2009 Acta Phys. Sin. 58 5726 (in Chinese) [谭长玲, 谭振兵, 马丽, 陈军, 杨帆, 屈凡明, 刘广同, 杨海方, 杨昌黎, 吕力 2009 物理学报 58 5726]

    [102]

    Wang L, Tian L H, Wei G D, Gao F M, Zheng J J, Yang W Y 2011 J. Inorg. Mater. 1009 (in Chinese) [王霖, 田林海, 尉国栋, 高凤梅, 郑金桔, 杨为佑 2011 无机材料学报 1009]

    [103]

    Hu H X, Zhang Z H, Liu X H, Qiu M, Ding K H 2010 Acra Phys. Sin. 59 7156 (in Chinese) [胡海鑫, 张振华, 刘新海, 邱明, 丁开和 2010 物理学报 59 7156]

    [104]

    Hu Y J, Jin J, Zhang H, Wu P, Cai C X 2010 Acta Phys. Chim. Sin. 26 2073 (in Chinese) [胡耀娟, 金娟, 张卉, 吴萍, 蔡称心 2010 物理化学学报 26 2073]

    [105]

    Xu X J, Qin J G, Li Z 2009 Prog. Chem. 79 (in Chinese) [徐秀娟, 秦金贵, 李振 2009 化学进展 79]

    [106]

    Huang H R, Chen J 2009 Carbon techniques 35 (in Chinese) [黄桂荣, 陈建 2009 炭素技术 35]

    [107]

    Ma S Q, Pei L Z, Kang Y J 2009 Modern Physics 44 (in Chinese) [马圣乾, 裴立振, 康英杰 2009 现代物理知识 44]

    [108]

    Yang Q G, Lv W, Yang Y G, Wang M Z 2008 New Carbon Mater. 97 (in Chinese) [杨全红, 吕伟, 杨永岗, 王茂章 2008 新型炭材料 97]

    [109]

    Li X, Zhao W F, Chen G H 2008 Materials Review 48 (in Chinese) [李旭, 赵卫峰, 陈国华 2008 材料导报 48]

    [110]

    Gu Z B, Ji G H, Lu M H 2010 J. Nanjing University of Technology (Natural Science Edition) 105 (in Chinese) [顾正彬, 季根华, 卢明辉 2010 南京工业大学学报 (自然科学版) 105]

  • [1] Zhu Yi-Heng, Zhu Zhi-Guang, Chen Cheng-Ke, Jiang Mei-Yan, Li Xiao, Lu Shao-Hua, Hu Xiao-Jun. Preparation of nanodiamonds based on phase transformation of vertical sheet under atmospheric pressure. Acta Physica Sinica, 2024, 73(2): 028101. doi: 10.7498/aps.73.20231064
    [2] Zhang Yi-Fei, Liu Yuan, Mei Jia-Dong, Wang Jun-Zhuan, Wang Xiao-Mu, Shi Yi. Quaternary nanoparticle array antenna for graphene/silicon near-infrared detector. Acta Physica Sinica, 2024, 73(6): 064202. doi: 10.7498/aps.73.20231657
    [3] Ding Fei-Xiang, Rong Xiao-Hui, Wang Hai-Bo, Yang Yang, Hu Zi-Lin, Dang Rong-Bin, Lu Ya-Xiang, Hu Yong-Sheng. Phase transitions of Na-ion layered oxide materials and their influence on properties. Acta Physica Sinica, 2022, 71(10): 108801. doi: 10.7498/aps.71.20220291
    [4] Deng Xu-Liang, Ji Xian-Fei, Wang De-Jun, Huang Ling-Qin. First principle study on modulating of Schottky barrier at metal/4H-SiC interface by graphene intercalation. Acta Physica Sinica, 2022, 71(5): 058102. doi: 10.7498/aps.71.20211796
    [5] Chen Shan-Deng, Bai Qing-Shun, Dou Yu-Hao, Guo Wan-Min, Wang Hong-Fei, Du Yun-Long. Simulation research on nucleation mechanism of graphene deposition assisted by diamond grain boundary. Acta Physica Sinica, 2022, 71(8): 086103. doi: 10.7498/aps.71.20211981
    [6] Guo Xiao-Meng, Qing Fang-Zhu, Li Xue-Song. Applications of graphene in anti-corrosion of metal surface. Acta Physica Sinica, 2021, 70(9): 098102. doi: 10.7498/aps.70.20210349
    [7] Hu Bao-Jing, Huang Ming, Li Peng, Yang Jing-Jing. Multiband plasmon-induced transparency based on nanometals-graphene hybrid model. Acta Physica Sinica, 2020, 69(17): 174201. doi: 10.7498/aps.69.20200200
    [8] Bai Qing-Shun, Dou Yu-Hao, He Xin, Zhang Ai-Min, Guo Yong-Bo. Deposition and growth mechanism of graphene on copper crystal surface based on molecular dynamics simulation. Acta Physica Sinica, 2020, 69(22): 226102. doi: 10.7498/aps.69.20200781
    [9] Jiang Xiao-Wei, Wu Hua, Yuan Shou-Cai. Enhancement of graphene three-channel optical absorption based on metal grating. Acta Physica Sinica, 2019, 68(13): 138101. doi: 10.7498/aps.68.20182173
    [10] Sun Xiao-Ning, Qu Zhao-Ming, Wang Qing-Guo, Yuan Yang, Liu Shang-He. Research progress of metal-insulator phase transition in VO2 induced by electric field. Acta Physica Sinica, 2019, 68(10): 107201. doi: 10.7498/aps.68.20190136
    [11] Chen Cai-Yun, Liu Jin-Xing, Zhang Xiao-Min, Li Jin-Long, Ren Ling-Ling, Dong Guo-Cai. Coverage measurement of graphene film on metallic substrate using scanning electron microscopy. Acta Physica Sinica, 2018, 67(7): 076802. doi: 10.7498/aps.67.20172654
    [12] Pu Xiao-Qing, Wu Jing, Guo Qiang, Cai Jian-Zhen. Theoretical study on ohmic contact between graphene and metal electrode. Acta Physica Sinica, 2018, 67(21): 217301. doi: 10.7498/aps.67.20181479
    [13] Gao Jian, Sang Tian, Li Jun-Lang, Wang La. Double-channel absorption enhancement of graphene using narrow groove metal grating. Acta Physica Sinica, 2018, 67(18): 184210. doi: 10.7498/aps.67.20180848
    [14] Chen Hao, Zhang Xiao-Xia, Wang Hong, Ji Yue-Hua. Near-infrared absorption of graphene-metal nanostructure based on magnetic polaritons. Acta Physica Sinica, 2018, 67(11): 118101. doi: 10.7498/aps.67.20180196
    [15] Guo Hui, Lu Hong-Liang, Huang Li, Wang Xue-Yan, Lin Xiao, Wang Ye-Liang, Du Shi-Xuan, Gao Hong-Jun. Intercalation and its mechanism of high quality large area graphene on metal substrate. Acta Physica Sinica, 2017, 66(21): 216803. doi: 10.7498/aps.66.216803
    [16] Li Hao, Fu Zhi-Bing, Wang Hong-Bin, Yi Yong, Huang Wei, Zhang Ji-Cheng. Preperetions of bi-layer and multi-layer graphene on copper substrates by atmospheric pressure chemical vapor deposition and their mechanisms. Acta Physica Sinica, 2017, 66(5): 058101. doi: 10.7498/aps.66.058101
    [17] Lu Xiao-Bo, Zhang Guang-Yu. Graphene/h-BN Moiré superlattice. Acta Physica Sinica, 2015, 64(7): 077305. doi: 10.7498/aps.64.077305
    [18] Ye Peng-Fei, Chen Hai-Tao, Bu Liang-Min, Zhang Kun, Han Jiu-Rong. Synthesis of SnO2 quantum dots/graphene composite and its photocatalytic performance. Acta Physica Sinica, 2015, 64(7): 078102. doi: 10.7498/aps.64.078102
    [19] Li Feng, Xiao Chuan-Yun, Kan Er-Jun, Lu Rui-Feng, Deng Kai-Ming. Density functional study on the different behaviors of Pd and Pt coating on graphene. Acta Physica Sinica, 2014, 63(17): 176802. doi: 10.7498/aps.63.176802
    [20] Lu Zhi-Peng, Zhu Wen-Jun, Lu Tie-Cheng. Ab initio study of the bcc-to-hcp transition mechanism in Fe under pressure. Acta Physica Sinica, 2013, 62(5): 056401. doi: 10.7498/aps.62.056401
Metrics
  • Abstract views:  9293
  • PDF Downloads:  2612
  • Cited By: 0
Publishing process
  • Received Date:  17 June 2012
  • Accepted Date:  01 August 2012
  • Published Online:  05 January 2013

/

返回文章
返回