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24 - Silicene, Germanene, and Stanene

from Part III

Published online by Cambridge University Press:  22 June 2017

Phaedon Avouris
Affiliation:
IBM T. J. Watson Research Center, New York
Tony F. Heinz
Affiliation:
Stanford University, California
Tony Low
Affiliation:
University of Minnesota
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2D Materials
Properties and Devices
, pp. 458 - 471
Publisher: Cambridge University Press
Print publication year: 2017

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References

24.9 References

Radisavljevic, B, Radnovic, A, Brivio, J, Giacometti, V and Kis, A, Nature Nanotechnol. 6 147 (2011).Google Scholar
Li, L, Yu, Y, Ye, G-J, Ge, Q, Ou, X, Wu, H, Feng, D, Chen, X-H and Zhang, Y, Nature Nanotechnol. 9 372 (2014).CrossRefGoogle Scholar
Takeda, K and Shiraishi, K, Phys. Rev. B 50 14916 (1994).CrossRefGoogle Scholar
Guzman-Verri, G and Lew Yan Voon, L, Phys. Rev. B 76 075131 (2007).Google Scholar
Cahangirov, S, Topsakal, M, Aktürk, E, Sahin, H and Ciraci, S, Phys. Rev. Lett. 102 236804 (2009).CrossRefGoogle Scholar
Vogt, P, De Padova, P, Quaresima, C, Avila, J, Frantzeskakis, E, Asensio, M C, Resta, A, Ealet, B and Le Lay, G, Phys. Rev. Lett. 108 155501 (2012).Google Scholar
Le Lay, G, Surface Sci. 132 169 (1983).Google Scholar
Liu, Z-L, Wang, M-X, Xu, J-P, Ge, J-F, Le Lay, G, Vogt, P, Qian, D, Gao, C-L, Liu, C and Jia, J-F, New J. Phys. 16 075006 (2014).Google Scholar
Wu, K-H Chin. Phys. B 24 086802 (2015).Google Scholar
Liu, Z-L, Wang, M-X, Liu, C, Jia, J-F, Vogt, P, Quaresima, C, Ottaviani, C, Olivieri, B, De Padova, P and Le Lay, L, APL Mater. 2 092513 (2014).Google Scholar
Li, H, Fu, H-X and Meng, S, Chin. Phys. B 24 086102 (2015).CrossRefGoogle Scholar
Le Lay, G, Salomon, E, De Padova, P, Layet, J-M and Angot, T, Aust. J. Chem. 67 1370 (2014).Google Scholar
Fleurence, A, Friedlein, R, Ozaki, T, Kawai, H, Wang, Y, and Yamada-Takamura, Y, Phys. Rev. Lett. 108 245501 (2012).Google Scholar
Meng, L, Wang, Y, Zhang, L, Du, S, Wu, R, Li, L, Zhang, Y, Li, G, Zhou, H, Hofer, W A and Gao H-J, Nano Lett. 13 685 (2013).Google Scholar
Le Lay, G, Cahangirov, S, Xian, L and Rubio, A, IEEE Conference Publications, International Conference on Manipulation, Manufacturing and Measurement on the Nanoscale (3M-NANO), 108 (2014) DOI: 10.1109/3M-NANO.2014.7057339.Google Scholar
Fukaya, Y, Mochizuki, I, Maekawa, M, Wada, K, Hyodo, T, Matsuda, I and Kawasuso, A, Phys. Rev. B 88 205413 (2013).Google Scholar
Kawahara, K, Shirasawa, T, Arafune, R, Lin, C-L, Takahashi, T, Kawai, M and Takagi, N, Surface Sci. 623 25 (2014).CrossRefGoogle Scholar
Resta, A, Leoni, T, Barth, C, Ranguis, A, Becker, C, Bruhn, T, Vogt, P and Le Lay, G, Sci. Rep. 3 2399 (2013).Google Scholar
Lin, C-L, Arafune, R, Kawai, M and Takagi, N, Chin. Phys. B 24 087307 (2015).Google Scholar
Guo, Z X, Furuya, S, Iwata, J I and Oshiyama A, Phys. Rev. B 87 235435 (2013).Google Scholar
Huang, L-F, Gong, P-L and Zeng, Z, Phys. Rev. B 91 205433 (2015).Google Scholar
Arafune, R, Lin, C-L, Kawahara, K, Tsukahara, N, Minamitani, E, Kim, Y, Takagi, N and Kawai, M, Surface Sci. 608 297 (2013).Google Scholar
Lalmi, B, Oughaddou, H, Enriquez, H, Kara, A, Vizzini, S, Ealet, B and Aufray, A, Appl. Phys. Lett. 97 223109 (2010).Google Scholar
Le Lay, G, De Padova, P, Resta, A, Bruhn, T and Vogt, P, J. Phys. D: Appl. Phys. 45 392001 (2012).Google Scholar
Hoffmann, R, Angew. Chem. Int. Ed. 52 93 (2013).Google Scholar
Jamgotchian, H, Colignon, Y, Hamzaoui, N, Ealet, B, Hoarau, J Y, Aufray B and Bibérian J P, J. Phys.: Condens. Matter 24 172001 (2012).Google Scholar
Moras, P, Mentes, T O, Sheverdyaeva, P M, Locatelli, A, Carbone C, J. Phys.: Condens. Matter 26 185001 (2014).Google Scholar
Acun, A, Poelsema, B, Zandvliet, H J W and van Gastel, R, Appl. Phys. Lett. 103 263119 (2013).Google Scholar
Mannix, A J, Kiraly, B, Fisher, B L, Hersam, M C and Guisinger, N P, ACS Nano 8 7538 (2014).Google Scholar
Rahman M, S, Nakagawa, T, and Mizuno, S, Jpn. J. Appl. Phys. 54 015502 (2015).CrossRefGoogle Scholar
Drummond, N D, Zolyomi, V, Fal’ko, V I, Phys. Rev. B 85 075423 (2012).CrossRefGoogle Scholar
Liu, C C, Feng, W and Yao, Y G, Phys. Rev. Lett. 107 076802 (2011).Google Scholar
Ezawa, M, New J. Phys. 14 033003 (2012).Google Scholar
Kou, L, Ma, Y, Yan, B, Tan, X, Chen, C and Smith, S C, ACS AppL. Mater. Interfaces 7 19226 (2015).Google Scholar
Avila, J, De Padova, P, Cho, S, Colambo, I, Lorcy, S, Quaresima, C, Vogt, P, Resta, A, Le Lay, G and Asensio, M C, J. Phys.: Condens. Matter 25 (2013) 262001.Google Scholar
Huang, S, Kang, W and Yang, L, Appl. Phys. Lett. 102 133106 (2013).Google Scholar
Houssa, H, Dimoulas, A and Molle, A, J. Phys.: Condens. Matter 27 253002 (2015).Google Scholar
Cahangirov, S, Audiffred, M, Tang, P, Iacomino, A, Duan, W, Gabriel Merino, G and Rubio, A, Phys. Rev. B 88 035432 (2013).Google Scholar
Lin, C L, Arafune, R, Kawahara, K, Kanno, M, Tsukahara, N, Minamitani, E, Kim, Y, Kawai, M and Takagi, N, Phys. Rev. Lett. 110 076801 (2013).Google Scholar
Ishida, H, Hamamoto, Y, Morikawa, Y, Minamitani, E, Arafune, R and Takagi, N, New J. Phys. 17 015013 (2015).Google Scholar
Yu, W-Z, Yan, J-A and Gao, S-P, Nanoscale Res. Lett. 10 351 (2015).Google Scholar
Qiu, J, Fu, H, Xu, Y, Oreshkin, A I, Shao, T, Li, H, Meng, S, Chen, L, and Wu, K, Phys. Rev. Lett. 114 126101 (2015).Google Scholar
Beato-Medina, D, Salomon, E, Le Lay, G and Angot, T, J. Electron Spectrosc. Relat. Phenom. November 2016, DOI: 10.1016/j.elspec.2016.11.002.Google Scholar
Vogt, P, Capiod, P, Berthe, M, Resta, A, De Padova, P, Bruhn, T, Le Lay, G and Grandidier, B, Appl. Phys. Lett. 104 021602 (2014).Google Scholar
Salomon, E, El Ajjouri, R, Le Lay, G. and Angot, T, J. Phys.: Condens. Matter 26 185003 (2014).Google Scholar
Feng, B, Ding, Z, Meng, S, Yao, Y, He, X, Cheng, P, Chen, L and Wu, K, Nano Lett. 12 3507 (2012).Google Scholar
De Padova, P, Avila, J, Resta, A, Razado-Colambo, I, Quaresima, C, Ottaviani, C, Olivieri, B, Bruhn, T, Vogt, P, Asensio, M C and Le Lay, G, J. Phys.: Condens. Matter 25 382202 (2013).Google Scholar
De Padova, P, Ottaviani, C, Quaresima, C, Olivieri, B, Imperatori, P, Salomon, E, Angot, T, Quagliano, L, Romano, C, Vona, A, Muniz-Miranda, M, Generosi, A, Paci, B and Le Lay, G, 2D Mater. 1 021003 (2014).Google Scholar
Zhuang, J, Xu, X, Du, Y, Wu, K, Chen, L, Hao, W, Wang, J, Yeoh, W K, Wang, X, and Dou, S X, Phys. Rev. B 91, 161409(R) (2015).Google Scholar
Chen, L, Li, H, Feng, B, Ding, Z, Qiu, J, Cheng, P, Wu, K, and Meng, S, Phys. Rev. Lett. 110 085504 (2013).Google Scholar
Borensztein, Y, Curcella, A, Royer, S and Prévot, G, Phys. Rev. B 92 155497 (2015).Google Scholar
Chen, J, Du, Y, Li, Z, Li, W, Feng, B, Qiu, J, Cheng, P, Dou, SX, Chen, L and Wu, K, Sci. Rep. 5 13590 (2015).Google Scholar
Fu, H, Chen, L, Chen, J, Qiu, J, Ding, Z, Zhang, J, Wu, K, Li, H and Meng, S, Nanoscale 7 15880 (2015).Google Scholar
Zhang, L-D, Yang, F and Yao, Y, Phys. Rev. B 92 104504 (2015).Google Scholar
Chen, L, Feng, B and Wu, K, Appl. Phys. Lett. 102 081602 (2013).Google Scholar
Dávila, M E, Xian, L, Cahangirov, S, Rubio, A and Le Lay, G, New J. Phys. 16 095002 (2014).Google Scholar
Derivaz, M, Dentel, D, Stephan, R, Hanf, M-C, Mehdaoui, A, Sonnet, P and Pirri, C, Nano Lett. 15 2510 (2015).Google Scholar
Li, L, Lu, S-Z, Pan, J, Qin, Z, Wang, Y-Q, Wang, Y, Cao, G, Du, S and Gao, H-J, Adv. Mater. 26 4820 (2014).Google Scholar
Švec, M, Hapala, P, M. Ondráček, M, Merino, P, Blanco-Rey, M, Mutombo, P, M. Vondráček, M, Polyak, Y, Cháb, V, Martín Gago, J A and Jelínek, P, Phys. Rev. B 89 201412(R) (2014).Google Scholar
Bampoulis, P, Zhang, L, Safaei, A, van Gastel, R, Poelsema, B, and Zandvliet, H J W, J. Phys.: Condens. Matter 26 442001 (2014).Google Scholar
Acun, A, Zhang, L, Bampoulis, P, Farmanbar, M, van Houselt, A, Rudenko, A N, Lingenfelder, M, Brocks, G, Poelsema, b, Katsnelson, M I and Zandvliet, H J W, J. Phys.: Condens. Matter. 27 (44) (2015).Google Scholar
Zhang, L, Bampoulis, P, van Houselt, A and Zandvliet, H J W, Appl. Phys. Lett. 107 111605 (2015).Google Scholar
Ye, X-S, Shao, Z-G, Zhao, H, Yang, L. and Wang, C-L, RSC Adv. 4, 21216 (2014).Google Scholar
Liu, C-C, Jiang, H and Yao, Y, Phys. Rev. B 84 195430 (2011).Google Scholar
Ezawa, M, J. Supercond. Nov. Magn. 28 1249 (2015).CrossRefGoogle Scholar
Dávila, M E and Le Lay, G, Sci. Rep. 6 20714 (2016).Google Scholar
Zhu, F-F, Chen, W-J, Xu, Y, Gao, C-L, Guan, D-D, Liu, C-H, Qian, D, Zhang, S-C and Jia, J-F, Nature Materials 14 1020 (2015).Google Scholar
Fang, Y, Huang, Z-Q, Hsu, C-H, Li, X, Xu, Y, Zhou, Y, Wu, S, Chuang, F-C and Zhu, Z-Z, Sci. Rep. 5 14196 (2015).CrossRefGoogle Scholar

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