2D Monoelements. Группа авторов

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group-IV monochalcogenides and their piezoelectric properties. Phys. Chem. Chem. Phys., 18, 47, 32514, 2016.

      27. Koenig, S.P., Doganov, R.A., Schmidt, H., Castro Neto, A.H., Oezyilmaz, B., Electric field effect in ultrathin black phosphorus. Appl. Physics Lett., 104, 10, 103106, 2014.

      28. Cho, K., Yang, J., Lu, Y., Phosphorene: An emerging 2D material. J. Mater. Res., 32, 15, 2839–2847, 2017.

      29. Wang, G., Slough, W.J., Pandey, R., Karna, S.P., Degradation of phosphorene in air: Understanding at atomic level. 2D Mater., 3, 2, 025011, 2016.

      30. Wang, G., Pandey R., Karna S.P., J. Appl. Phys., 118, 234304, 2015.

      31. Hao, F. and Chen, X., J. Appl. Phys., 118, 234304, 2015.

      32. Ziletti, A., Carvalho, A., Trevisanutto, P.E., Campbell, D.K., Coker, D.F., Neto, A.C., Phys. Rev. B, 91, 8, 085407, 2015.

      33. Pang, J., Bachmatiuk, A., Yin, Y., Trzebicka, B., Zhao, L., Fu, L., Rummeli, M.H., Adv. Energy Mater., 8, 8, 1702093, 2018.

      34. Khandelwal, A., Mani, K., Karigerasi, M.H., Lahiri, I., Mater. Sci. Eng.: B, 221, 17–34, 2017.

      35. Geim, A.K., Rev. Mod. Phys., 83, 3, 851, 2011.

      36. Novoselov, K.S., Rev. Mod. Phys., 83, 3, 837, 2011.

      37. Batmunkh, M., Bat-Erdene, M., Shapter, J.G., Adv. Energy Mater., 8, 5, 1701832, 2018.

      38. Bagheri, S., Mansouri, N., Aghaie, E., Int. J. Hydrogen Energy, 41, 7, 4085–4095, 2016.

      39. Lu, W., Nan, H., Hong, J., Chen, Y., Zhu, C., Liang, Z., Zhang, Z., Nano Res., 7, 6, 853–859, 2014.

      40. Coleman, J.N., Lotya, M., O’Neill, A., Bergin, S.D., King, P.J., Khan, U., Shvets, I.V., Science, 331, 6017, 568–571, 2011.

      41. Liu, K.K., Zhang, W., Lee, Y.H., Lin, Y.C., Chang, M.T., Su, C.Y., Lai, C.S., Nano Lett., 12, 3, 1538–1544, 2012.

      42. Cudazzo, P., Attaccalite, C., Tokatly, I.V., Rubio, A., Phys. Rev. Lett., 104, 226804, 2010.

      44. Kopf, M., Eckstein, N., Pfister, D., Grotz, C., Kruger, I., Greiwe, M., Nilges, T., J. Cryst. Growth, 405, 6–10, 2014.

      45. Wei, Q. and Peng, X., Appl. Phys. Lett, 104, 251915, 2014.

      46. Sisakht, E.T., Zare, M.H., Fazileh, F., Phys. Rev. B, 91, 8, 085409, 2015.

      47. Rodin, A.S., Carvalho, A., Castro, A.H., Neto Phys. Rev. Lett., 112, 176801, 2014.

      48. Liang, L., Wang, J., Lin, W., Sumpter, B.G., Meunier, V., Pan, M., Nano Lett., 14, 11, 6400, 2014.

      49. Wang, X., Jones, A.M., Seyler, K.L., Tran, V., Jia, Y., Zhao, H., Xia, F., Nat. Nanotechnol., 10, 6, 517, 2015.

      50. Khan, I. and Hong, J., New Journal of Physics, 17, 2, 023056, 2015.

      51. Dhanabalan, S.C., Ponraj, J.S., Guo, Z., Li, S., Bao, Q., Zhang, H., Adv. Sci., 4, 1600305, 2017.

      52. Cakir, D., Sahin, H., Peeters, F.M., Phys. Rev. B, 90, 20, 205421, 2014.

      53. Castellanos-Gomez, A., Vicarelli, L., Prada, E., Island, J.O., Narasimha-Acharya, K.L., Blanter, S.I., Zandbergen, H.W., 2D Mater., 1, 2, 025001, 2014.

      54. Rodin, A.S., Carvalho, A., Neto, A.C., Phys. Rev. B, 90, 7, 075429, 2014.

      55. Wang, L., Kutana, A., Zou, X., Yakobson, B.I., Nanoscale, 7, 21, 9746–9751, 2015.

      56. Drissi, L.B., Sadki, S., Sadki, K., J. Phys.: Condens. Matter, 28, 14, 145501, 2016.

      57. Cadelano, E., Palla, P.L., Giordano, S., Colombo, L., Phys. Rev. B, 82, 235414, 2010.

      58. Evans, K.E. and Alderson, A., Adv. Mater., 12, 617, 2000.

      59. Yuan, J., Yu, N., Xue, K., Miao, X., RSC Adv., 7, 8654, 2017.

      60. Wang, G., Loh, G.C., Pandey, R., Karna, S.P., Nanotechnology, 27, 5, 055701, 2015.

      61. Kou, L., Frauenheim, T., Chen, C., J. Phys. Chem. Lett., 5, 15, 2675, 2014.

      62. Wang, H., Wang, X., Xia, F., Wang, L., Jiang, H., Xia, Q., Han, S.J., Nano Lett., 14, 11, 6424, 2014.

      63. Favron, A., Gaufres, E., Fossard, F., Phaneuf-L’Heureux, A.L., Tang, N.Y., Levesque, P.L., Martel, R., Nat. Mater., 14, 8, 826, 2015.

      64. Kim, J.S., Liu, Y., Zhu, W., Kim, S., Wu, D., Tao, L., Akinwande, D., Sci. Rep., 5, 8989, 2015.

      65. Ahmed, T., Balendhran, S., Karim, M.N., Mayes, E.L., Field, M.R., Ramanathan, R., Walia, S., npj 2D Mater. Appl., 18, 13–16, 2017.

      66. Lu, J., Yang, J., Carvalho, A., Liu, H., Lu, Y., Sow, C.H., Acc. Chem. Res., 49, 9, 1806, 2016.

      67. Edmonds, M.T., Tadich, A., Carvalho, A., Ziletti, A., O’Donnell, K.M., Koenig, S.P., Fuhrer, M.S., ACS Appl. Mater. Interfaces, 7, 27, 14557–14562, 2015.

      68. Wang, G., Pandey, R., Karna, S.P., Appl. Physics Lett., 106, 17, 173104, 2015.

      69. Kulish, V.V., Malyi, O.I., Persson, C., Wu, P., Phys. Chem. Chem. Phys., 17, 2, 992–1000, 2015.

      71. Nakada, K. and Ishii, A., Solid State Commun., 151, 13–16, 2011.

      72. Lehtinen, P.O., Foster, A.S., Ayuela, A., Krasheninnikov, A., Nordlund, K., Nieminen, R.M., Phys. Rev. Lett., 91, 017202, 2003.

      73. Wu, M., Liu, E.-Z., Jiang, J.Z., Appl. Phys. Lett., 93, 082504, 2008.

      74. Ziletti, A., Carvalho, A., Campbell, D.K., Coker, D.F., Neto, A.C., Phys. Rev. Lett., 114, 4, 046801, 2015.

      75. Li, Y., Ma, F., Wang, L.W., J. Mater. Chem. A, 6, 17, 7815, 2018.

      76. Li W, W., Yang, Y., Zhang, G. et al., Nano Lett., 15, 3, 1691, 2015.

      77. Yang, G., Fan, X., Liang, Z. et al., RSC Adv., 6, 32, 26540, 2016.

      78. Li, Y., Wu, D., Zhou, Z. et al., J. Phys. Chem. Lett., 3, 16, 2221, 2012.

      79. Sadki, K., Sadki, S., Drissi, L.B., J. Phys. Chem. Solids, 130, 13, 2019.

      80. Yin, H., Zheng, G.P., Gao, J., Wang, Y., Ma, Y., Phys. Chem. Chem. Phys., 19, 40, 27508, 2017.

      81. Sadki, S., Sadki, K., Drissi, L.B., Superlattices Microstruct., 126, 186, 2019.

      82. Peng, X. and Wei, Q., Mater.

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