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EMI Shielding Performance and Mechanical Properties of Proton Acid Treated Ti3C2T x MXene/CNT Composite
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Affiliation:

College of Materials Science and Engineering, Shenyang Aerospace University, Shenyang 110136, China

Fund Project:

National Natural Science Foundation of China (11902204); Natural Science Foundation of Liaoning Province (2019010256-JH3/301, 2020-MS-236); Aeronautical Science Foundation (201903054001); Liaoning Education Department Project (LJKZ0223); Shenyang Youth Technological Innovation Talent Project (RC200030); Sponsored by Department of Science & Technology of Liaoning Province (2020-BS-173); Sponsored by Education Department of Liaoning Province (JYT19041)

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    Abstract:

    After the colloidal proton acid treatment, the preparation of titanium carbide Ti3C2Tx was achieved. In addition, the single-walled carbon nanotube (SWCNT) was used as reinforcement to improve the mechanical properties of proton acid treated titanium carbide (H-MXene): the tensile property is enhanced by nearly 400% while the electromagnetic shielding performance is retained. This study demonstrates that the H-MXene and carbon nanotube have great potential in electromagnetic interference (EMI) shielding composite materials with excellent mechanical properties.

    Reference
    [1] Chandra R B J, Shivamurthy B, Kulkarni S D et al. Mater Res Express[J], 2019, 6(8): 82 008
    [2] Tan D C, Jiang C M, Li Q K et al. J Mater Sci Mater Elec- tron[J], 2021, 32(21): 25 603
    [3] Chung D D L. Carbon[J], 2001, 39(2): 279
    [4] Voronin A S, Fadeev Y V, Govorun I V et al. Journal of Materials Science[J], 2021, 56(26): 14 741
    [5] Geetha S, Satheesh K K K, Rao C R K et al. J Appl Polym Sci[J], 2009, 112(4): 2073
    [6] Naguib M, Kurtoglu M, Presser V et al. Adv Mater[J], 2011, 23(37): 4248
    [7] Shayesteh Z A, Mirkhani S A, Sun P C et al. Nanoscale[J], 2021, 13(6): 3572
    [8] Li T K, Chen L L, Yang X et al. J Mater Chem C[J], 2019, 7(4): 1022
    [9] Kim S J, Koh H J, Ren C E et al. ACS Nano[J], 2018, 12(2): 986
    [10] Naguib M, Come J, Dyatkin B et al. Electrochem Commun[J], 2012, 16(1): 61
    [11] Yang Q, Huang Z D, Li X L et al. ACS Nano[J], 2019, 13(7): 8275
    [12] Yun T, Kim H, Iqbal A et al. Adv Mater[J], 2020, 32(9): 1 906 769
    [13] Li X L, Yin X W, Liang S et al. Carbon[J], 2019, 146: 210
    [14] Gargama H, Chaturvedi S K, Thakur A K. J Electromagn Waves Appl[J], 2014, 28(6): 765
    [15] Iqbal A, Hong J, Ko T Y et al. Nano Converg[J], 2021, 8(1): 1
    [16] Berdiyorov G R. Europhysics Letters[J], 2015, 111(6): 67 002
    [17] An H, Habib T, Shah S et al. Sci Adv[J], 2018, 4(3): eaaq0118
    [18] Ling Z, Ren C E, Zhao M Q et al. Proc Natl Acad Sci[J], 2014, 111(47): 16 676
    [19] Zhang B, Luo C, Zhou G M et al. Adv Funct Mater[J], 2021, 31(26): 2 100 793
    [20] Barshutina M N, Volkov V S, Arsenin A V et al. Materials[J], 2021, 14(9): 2418
    [21] Natu V, Sokol M, Verger L et al. J Phys Chem C[J], 2018, 122(48): 27 745
    [22] Chen H W, Wen Y Y, Qi Y Y et al. Adv Funct Mater[J], 2020, 30(5): 1 906 996
    [23] Ghidiu M, Halim J, Kota S et al. Chem Mater[J], 2016, 28(10): 3507
    [24] Liu Shunhua, Liu Junmin, Dong Xinglong et al. Electromagnetic Shielding and Absorbing Materials[M]. Beijing: Chemical Industry Press, 2014 (in Chinese)
    [25] Simon R M. Polym-Plast Technol Eng[J], 1981, 17(1): 1
    [26] Shui X P, Chung D D L. J Electron Mater[J], 1997, 26(8): 928
    [27] Shahzad F, Alhabeb M, Hatter C B et al. Science[J], 2016, 353(6304): 1137
    [28] Ji K J, Zhao H H, Zhang J et al. Appl Surf Sci[J], 2014, 311: 351
    [29] Ma J J, Wang K, Zhan M. RSC Adv[J], 2015, 5(80): 65 283
    [30] Moglie F, Micheli D, Laurenzi S et al. Carbon[J], 2012, 50(5): 1972
    [31] Yan D X, Pang H, Li B et al. Adv Funct Mater[J], 2015, 25(4): 559
    [32] Song W L, Guan X T, Fan L Z et al. J Mater Chem A[J], 2015, 3(5): 2097
    [33] Huang Y, Li N, Ma Y F et al. Carbon[J], 2007, 45(8): 1614
    [34] Cao W T, Chen F F, Zhu Y J et al. ACS Nano[J], 2018, 12(5): 4583
    [35] Zhang H B, Yan Q, Zheng W G et al. ACS Appl Mater Inter- faces[J], 2011, 3(3): 918
    [36] Ameli A, Nofar M, Wang S et al. ACS Appl Mater Interfaces[J], 2014, 6(14): 11 091
    [37] Zhang M S, Li M, Wang S K et al. Mater Des[J], 2017, 117: 37
    [38] Luo S H, Patole S, Anwer S et al. Nanotechnology[J], 2020, 31(39): 395 704
    [39] Li F, Cheng H M, Bai S et al. Appl Phys Lett[J], 2000, 77(20): 3161
    [40] Li Y Q, Yu T, Yang T Y et al. Adv Mater[J], 2012, 24(25): 3426
    [41] Chen H, Müller M B, Gilmore K J et al. Adv Mater[J], 2008, 20(18): 3557
    [42] Ling J Q, Zhai W T, Feng W W et al. ACS Appl Mater Inter- faces[J], 2013, 5(7): 2677
    [43] Tang W J, Lu L S, Xing D et al. Compos Part B Eng[J], 2018, 152: 8
    [44] Yuan Y, Yin W L, Yang M L et al. Carbon[J], 2018, 130: 59
    [45] Lu L S, Xing D, Teh K S et al. Mater Des[J], 2017, 120: 354
    [46] Pothupitiya G S S J, Yang K H, Braveenth R et al. Materials[J], 2017, 10(12): 1350
    [47] Li Y, Pei X, Shen B et al. RSC Adv[J], 2015, 5(31): 24 342
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[Liu Xingmin, Yang Jihua, Lu Shaowei, Yang Dongxu, Wang Jijie, Liu Chunzhong, Wang Sai. EMI Shielding Performance and Mechanical Properties of Proton Acid Treated Ti3C2T x MXene/CNT Composite[J]. Rare Metal Materials and Engineering,2023,52(1):23~30.]
DOI:10.12442/j. issn.1002-185X.20220299

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History
  • Received:April 11,2022
  • Revised:June 19,2022
  • Adopted:July 12,2022
  • Online: February 09,2023
  • Published: February 08,2023