• Acta Physica Sinica
  • Vol. 69, Issue 1, 017301-1 (2020)
Hui Wang1、2, Meng Xu2, and Ren-Kui Zheng1、2、*
Author Affiliations
  • 1School of Materials Science and Engineering, Nanchang University, Nanchang 330031, China
  • 2State Key Laboratory of High Performance Ceramics and Superfine Microstructure, Shanghai Institute of Ceramics, Chinese Academy of Sciences, Shanghai 200050, China
  • show less
    DOI: 10.7498/aps.69.20191486 Cite this Article
    Hui Wang, Meng Xu, Ren-Kui Zheng. Research progress and device applications of multifunctional materials based on two-dimensional film/ferroelectrics heterostructures[J]. Acta Physica Sinica, 2020, 69(1): 017301-1 Copy Citation Text show less
    References

    [1] Geim A K, Novoselov K S[J]. Nat. Mater., 6, 183(2007).

    [2] Yoon Y, Ganapathi K, Salahuddin S[J]. Nano Lett., 11, 3768(2011).

    [3] Li L, Chen Z, Hu Y, Wang X W, Zhang T, Chen W, Wang Q B[J]. J. Am. Chem. Soc., 135, 1213(2013).

    [4] Conley H J, Wang B, Ziegler J I, Haglund R F, Pantelides S T, Bolotin K I[J]. Nano Lett., 13, 3626(2013).

    [5] Lü L, Zhuge F, Xie F, Xiong X J, Zhang Q F, Zhang N, Huang Y, Zhai T Y[J]. Nat. Commun., 10, 3331(2019).

    [6] Eswaraiah V, Zeng Q S, Long Y, Liu Z[J]. Small, 12, 3480(2016).

    [7] Liu H, Neal A T, Zhu Z, Xu X F, Tománek D, Ye P D[J]. ACS Nano, 8, 4033(2014).

    [8] Topsakal M, Aktürk E, Ciraci S[J]. Phys. Rev. B, 79, 115442(2009).

    [9] Li W S, Zhou J, Wang H C, Wang S X, Yu Z H, Li S L, Shi Y, Wang X R[J]. Acta Phys. Sin., 66, 218503(2017).

    [10] Novoselov K S, Mishchenko A, Carvalho A, Neto A H C[J]. Science, 353, 9439(2016).

    [11] Hui Y Y, Liu X, Jie W, Chan N Y, Hao J, Hsu Y T, Li L J, Guo W, Lau S P[J]. ACS Nano, 7, 7126(2013).

    [12] Liu M, Nan T X, Hu J M, Zhao S S, Zhou Z, Wang C Y, Jiang Z D, Ren W, Ye Z G, Chen L Q, Sun N X[J]. NPG Asia Mater. 8 e, 31, 6(2016).

    [13] Xu M, Yan J M, Xu Z X, Guo L, Zheng R K, Li X G[J]. Acta Phys. Sin., 67, 157506(2018).

    [14] Yang Y J, Yang M M, Luo Z L, Huang H, Wang H, Bao J, Hu C, Pan G, Yao Y, Liu Y, Li X G, Zhang S, Zhao Y G, Gao C[J]. Appl. Phys. Lett., 100, 043506(2012).

    [15] Yan J M, Xu M, Chen T W, Yang M M, Liu F, Wang H, Guo L, Xu Z X, Fan F Y, Gao G Y, Dong S N, Li X G, Luo H S, Zhao W Y, Zheng R K[J]. Phys. Rev. Appl., 11, 034037(2019).

    [16] Jie W J, Hui Y Y, Chan N Y, Zhang Y, Lau S P, Hao J H[J]. J. Phys. Chem. C, 117, 13747(2013).

    [17] Tan Y W, Zhang Y, Bolotin K, Zhao Y, Adam S, Hwang E H, Sarma S D, Stomer H L, Kim P[J]. Phys. Rev. Lett., 99, 246803(2007).

    [18] Fratini S, Guinea F[J]. Phys. Rev. B, 77, 195415(2008).

    [19] Chen J H, Jang C, Xiao S D, Ishigami M, Fuhrer M S[J]. Nat. Nanotech., 3, 206(2008).

    [20] Hong X, Posadas A, Zou K, Ahn C H, Zhu J[J]. Phys. Rev. Lett., 102, 136804(2009).

    [21] Hong X, Hoffman J, Posadas A, Zhu K, Ahn C H, Zhu J[J]. Appl. Phys. Lett., 97, 033114(2010).

    [22] Zheng Y, Ni G X, Bae S, Cong C X, Kahya O, Toh C T, Kim H R, Im D, Yu T, Ahn J H, Hong B H, Özyimaz B[J]. Europhys. Lett., 93, 17002(2011).

    [23] Song E B, Lian B, Kim S M, Lee S, Chung T K, Wang M, Zeng C, Xu G, Wong K, Zhou Y, Rasool H I, Seo D H, Chung H J, Heo J, Seo S, Wang K L[J]. Appl. Phys. Lett., 99, 042109(2011).

    [24] Lee W, Kahya O, Toh C T, Özyilmaz B, Ahn J H[J]. Nanotech., 24, 475202(2013).

    [25] Baeumer C, Rogers S P, Xu R, Martin L W, Shim M[J]. Nano Lett., 13, 1693(2013).

    [26] Zhang X W, Xie D, Xu J, Zhao H, Zhang C, Sun Y, Zhao Y, Feng T, Li G, Ren T[J]. 12th IEEE International Conference on Solid-State and Intergrated Circuit Technology, 978(2014).

    [27] Zhang X W, Xie D, Xu J L, Zhang C, Sun Y L, Zhao Y F, Li X, Li X M, Zhu H W, Chen H M, Chang T C[J]. Carbon, 93, 384(2015).

    [28] Lipatov A, Fursina A, Vo T H, Sharma P, Gruverman A, Sinitskii A[J]. Adv. Electron. Mater., 3, 1700020(2017).

    [29] Rogers S P, Xu R, Pandya S, Martin L W, Shim M[J]. J. Phys. Chem. C, 121, 7542(2017).

    [30] Fang B J, Ding C L, Wu J, Du Q B, Ding J N, Zhao X Y, Xu H Q, Luo H S[J]. Eur. Phys. J. Appl. Phys., 57, 30101(2012).

    [31] Liu L, Li X, Wu X, Wang Y, Di W, Lin D, Zhao X, Luo H, Neumann N[J]. Appl. Phys. Lett., 95, 192903(2009).

    [32] Lee H J, Zhang S, Luo J, Li F, Shrout T R[J]. Adv. Funct. Mater., 20, 3154(2010).

    [33] Ding F, Ji H, Chen Y, Herklotz A, Dörr K, Mei Y, Rastelli A, Schmidt O G[J]. Nano Lett., 10, 3453(2012).

    [34] Jie W J, Hui Y Y, Zhang Y, Lau S P, Hao J H[J]. Appl. Phys. Lett., 102, 223112(2013).

    [35] Jie W J, Hao J H[J]. Nanoscale, 10, 328(2018).

    [36] Park N, Kang H, Park J, Lee Y, Yun Y, Lee J H, Lee S G, Lee Y H, Suh D[J]. ACS Nano, 9, 10729(2015).

    [37] Kato T, Hatakeyama R[J]. Nat. Nanotech., 7, 651(2012).

    [38] Ni Z H, Yu T, Lu Y H, Wang Y Y, Feng Y P, Shen Z X[J]. ACS Nano, 2, 2301(2008).

    [39] Wang L, Luo J, Chen Y, Lin L, Huang X, Xue H, Gao J[J]. ACS Appl. Mater. Interface, 11, 17774(2019).

    [40] Zhao X, Papageorgiou D G, Zhu L Y, Ding F, Young R J[J]. Nanoscale, 11, 14339(2019).

    [41] Zhou M Q, Kang Z X, Zhu S M[J]. Nanotechnology, 30, 395701(2019).

    [42] Zheng Y, Ni G X, Toh C T, Zeng M G, Chen S T, Yao K, Özyilmaz B[J]. Appl. Phys. Lett., 94, 163505(2009).

    [43] Zheng Y, Ni G X, Toh C T, Tan C Y, Yao K, Özyilmaz B[J]. Phys. Rev. Lett., 105, 166602(2010).

    [44] Ni G X, Zheng Y, Bae S, Tan C Y, Kahya O, Wu J, Hong B H, Yao K, Özyilmaz B[J]. ACS Nano, 6, 3935(2012).

    [45] Wang X D, Tang M H, Chen Y, Wu G, Huang H, Zhao X, Tian B, Wang J, Sun S, Shen H, Lin T, Sun J, Meng X, Chu J[J]. Opt. Quant. Electron., 48, 345(2016).

    [46] Wang X, Chen Y, Wu G, Wang J, Tian B, Sun S, Shen H, Lin T, Hu W, Kang T, Tang M, Xiao Y, Sun J, Meng X, Chu J[J]. Nanotechnology, 29, 134002(2018).

    [47] Bae S H, Kahya O, Sharma B K, Kwoon J, Cho H J, Özyilmaz B, Ahn J H[J]. ACS Nano, 7, 3130(2013).

    [48] Park S, Kim Y, Jung H, Park J Y, Lee N, Seo Y[J]. Sci. Rep., 7, 17290(2017).

    [49] Kim S, Dong Y, Hossain M M, Gorman S, Towfeeq I, Gajula D, Childress A, Rao A M, Koley G[J]. ACS Appl. Mater. Interface, 11, 16006(2019).

    [50] Silibin M V, Bystrov V S, Karpinsky D V, Nasani N, Goncalves G, Gavrilin I M, Solnyshkin A V, , Singh B, Bdikin [J]. Appl. Surf. Sci., 421, 42(2017).

    [51] Yaqoob U, , Chung G S[J]. Compos. Part B, 136, 92(2018).

    [52] Chen Y, Zhang L, Liu J, Lin X, Xu W, Yue Y, Shen Q D[J]. Carbon, 144, 15(2019).

    [53] Garain S, Jana S, Sinha T K, Mandal D[J]. ACS Appl. Mater. Interfaces, 8, 4532(2016).

    [54] Karan S K, Mandal D, Khatua B B[J]. Nanoscale, 7, 10655(2015).

    [55] Lu P, Wu X j, Guo W, Zeng X C[J]. Phys. Chem. Chem. Phys., 14, 13035(2012).

    [56] Wang Q H, Kalantar-Zadeh K, Kis A, Coleman J N, Strano M S[J]. Nat. Nanotech., 7, 699(2012).

    [57] Zhang X W, Xie D, Xu J L, Sun Y L, Li X, Zhang C, Dai R X, Zhao Y F, Li X M, Li X, Zhu H W[J]. IEEE Electron. Device Lett., 36, 784(2015).

    [58] Zhou C J, Wang X S, Raju S, Lin Z Y, Villaroman D, Huang B L, Chan H L W, Chan M, Chai Y[J]. Nanoscale, 7, 8695(2015).

    [59] Lu Z Y, Serrao C, Khan A I, You L, Wong J C, Ye Y, Zhu H Y, Zhang X, Salahuddin S[J]. Appl. Phys. Lett., 111, 023104(2017).

    [60] Ganapathi K L, Rath M, Rao M S R[J]. Semicond. Sci. Technol., 34, 055016(2019).

    [61] Sun Y L, Xie D, Zhang X W, Xu J L, Li X M, Li X, Dai R X, Li X, Li P, Gao X S, Zhu H W[J]. Nanotechnology, 28, 045204(2017).

    [62] Li T, Gao L M, Xie H Q, Ye L Q, Yang W D, Liu Q L, Li K[J]. Mater. Res. Express, 5, 066308(2018).

    [63] Lipatov A, Sharma P, Gruverman A, Sinitskii A[J]. ACS Nano, 9, 8089(2015).

    [64] Lipatov A, Li T, Vorobeva N S, Sinitskii A, Gruverman A[J]. Nano Lett., 19, 3194(2019).

    [65] Ko C, Lee Y, Chen Y, Suh J, Fu D, Suslu A, Lee S, Clarkson J D, Choe H S, Tongay S, Ramesh R, Wu J[J]. Adv. Mater., 28, 2923(2016).

    [66] Li C H, McCreary K M, Jonker B T[J]. ACS Omega, 1, 1075(2016).

    [67] Fang H J, Lin Z Y, Wang X S, Tang C Y, Chen Y, Zhang F, Chai Y, Li Q, Yan Q F, Chan H L W, Dai J Y[J]. Opt. Express, 23, 251881(2015).

    [68] Liu Y D, Guo J M, Yu A F, Zhang Y, Kou J Z, Zhang K, Wen R M, Zhang Y, Zhai J Y, Wang Z L[J]. Adv. Mater., 30, 1704524(2018).

    [69] Lee H S, Min S W, Park M K, Lee Y T, Jeon P J, Kim J H, Ryu S, Im S[J]. Small, 8, 3111(2012).

    [70] Radisavljevic B, Radnovic A, Brivio J, Giacometti V, Kis A[J]. Nat. Nanotech., 6, 147(2011).

    [71] Kobayashi T, Hori N, Nakajima T, Kawae T[J]. Appl. Phys. Lett., 108, 132903(2016).

    [72] Liu L, Wang X D, Han L, Tian B, Chen Y, Wu G L, Li D, Yan M G, Wang T, Sun S, Shen H, Lin T, Sun J L, Duan C G, Wang J L, Meng X J, Chu J H[J]. AIP Adv., 7, 065121(2017).

    [73] Liu X Q, Liang R R, Gao G Y, Pan C F, Jiang C S, Xu Q, Luo J, Zou X M, Yang Z Y, Liao L, Wang Z L[J]. Adv. Mater., 30, 1800932(2018).

    [74] Wang X D, Liu C, Chen Y, Wu G J, Yan X, Huang H, Wang Peng, Tian B, Hong Z C, Wang Y T, Sun S, Shen H, Lin T, Hu W D, Tang M H, Zhou P, Wang J L, Sun J L, Meng X J, Chu J H, Li Z[J]. 2 D Mater., 4, 025036(2017).

    [75] Wang X D, Wang P, Wang J L, Hu W D, Zhou X, Guo N, Sun H S, Shen H, Lin T, Tang M, Liao L, Jiang A, Sun J, Meng X, Chen X, Lu W, Chu J[J]. Adv. Mater., 27, 6575(2015).

    [76] Wu G J, Wang X D, Wang P, Huang H, Chen Y, Sun S, Shen H, Lin T, Wang J, Zhang S T, Bian L, Sun J, Meng X, Chu J[J]. Nanotechnology, 27, 364002(2016).

    [77] Yin L, Wang Z X, Wang F, Xu K, Cheng R Q, Wen Y, Li J, He J[J]. Appl. Phys. Lett., 110, 123106(2017).

    [78] Chen Y, Wang X D, Wang P, Huang H, Wu G J, Tian B, Hong Z C, Wang Y T, Sun S, Shen H, Wang J H, Hu W D, Sun J L, Meng X J, Chu J H[J]. ACS Appl. Mater. Interfaces, 8, 32083(2016).

    [79] Yin C, Wang X D, Chen Y, Li T, Sun S, Shen H, Du P, Sun J, Meng X, Chu J, Wong H F, Leung C W, Wang Z, Wang J[J]. Nanoscale, 10, 1727(2018).

    [80] Nguyen A, Sharma P, Scott T, Preciado E, Klee V, Sun D, Lu I H, Barroso D, Kim S, Shur V Y, Akhmatkhanov A R, Gryveman A, Bartels L, Dowben P A[J]. Nano Lett., 15, 3364(2015).

    [81] Wen B, Zhu Y, Yudistira D, Boes A, Zhang L, Yidirim T, Liu B, Yan H, Sun X, Zhou Y, Xue Y, Zhang Y, Fu L, Mitchell A, Zhang H, Lu Y[J]. ACS Nano, 13, 5335(2019).

    [82] Jin H, Yoon W Y, Jo W[J]. Appl. Phys. Lett., 110, 191601(2017).

    [83] Shin H W, Son J Y[J]. Electron. Mater. Lett., 14, 59(2018).

    [84] Li T, Lipatov A, Lu H, Lee H, Lee J W, Torun E, Wirtz L, Eom C B, Íñigue J, Sinitskii A, Gruverman A[J]. Nat. Comm., 9, 3344(2018).

    [85] Li T, Sharma P, Lipatov A, Lee H, Lee J W, Zhuravlev M Y, Paudel T R, Genenko Y A, Eom C B, Tsymbal E Y, Sinitskii A, Gruveman A[J]. Nano Lett., 17, 922(2017).

    [86] Li Y, Sun X Y, Xu C Y, Cao J, Sun Z Y, Zhen L[J]. Nanoscale, 10, 23080(2018).

    [87] Shin H W, Son J Y[J]. J. Alloy. Compd., 792, 673(2019).

    [88] Si M W, Liao P Y, Qiu G, Duan Y, Ye P D[J]. ACS Nano, 12, 6700(2018).

    [89] Si M W, Jiang C S, Chung W, Du Y C, Alam M A, Ye P D[J]. Nano Lett., 18, 3682(2018).

    [90] Zhang H, Liu C X, Qi X L, Dai X, Fang Z, Zhang S C[J]. Nat. Phys., 5, 438(2009).

    [91] Wang M, Liu C, Xu J P, Yang F, Miao L, Yao M Y, Gao C L, Shen C, Ma X, Chen X, Xu Z A, Liu Y, Zhang S C, Qian D, Jia J F, Xue Q K[J]. Science, 336, 52(2012).

    [92] Zhao X W, Dong S N, Gao G Y, Xu Z X, Xu M, Yan J M, Zhao W Y, Liu Y K, Yan S Y, Zhang J X, Wang Y, Lu H Z, Li X G, Furdya J K, Luo H S, Zheng R K[J]. Quant. Mater., 3, 52(2018).

    [93] Yan J M, Xu Z X, Chen T W, Xu M, Zhang C, Zhao X W, Liu F, Guo L, Yan S Y, Gao G Y, Wang F F, Zhang J X, Dong S N, Li X G, Luo H S, Zhao W, Zheng R K[J]. ACS Appl. Mater. Interfaces, 11, 9548(2019).

    [94] Li L, Yu Y, Ye G J, Ge Q, Ou X, Wu H, Feng D, Chen X H, Zhang Y[J]. Nat. Technol., 9, 372(2014).

    [95] Zhang S, Yang J, Xu R, Wang F, Li W, Ghufran M, Zhang Y W, Yu Z, Zhang G, Qin Q, Lu Y[J]. ACS Nano, 8, 9590(2014).

    [96] Lee Y T, Kwoon H, Kim J S, Kim H H, Lee Y J, Lim J A, Song Y W, Yi Y, Choi W K, Hwang H K, Im S[J]. ACS Nano, 9, 10394(2015).

    [97] Xie L, Chen X, Dong Z, Yu Q, Zhao X X, Yuan G L, Zeng Z M, Wang Y J, Zhang K[J]. Adv. Electron. Mater., 5, 1900458(2019).

    Hui Wang, Meng Xu, Ren-Kui Zheng. Research progress and device applications of multifunctional materials based on two-dimensional film/ferroelectrics heterostructures[J]. Acta Physica Sinica, 2020, 69(1): 017301-1
    Download Citation