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author:

Liu, Lei (Liu, Lei.) [1] | Ma, Zhewen (Ma, Zhewen.) [2] | Zhu, Menghe (Zhu, Menghe.) [3] | Liu, Lina (Liu, Lina.) [4] | Dai, Jinfeng (Dai, Jinfeng.) [5] | Shi, Yongqian (Shi, Yongqian.) [6] | Gao, Jiefeng (Gao, Jiefeng.) [7] | Dinh, Toan (Dinh, Toan.) [8] | Nguyen, Thanh (Nguyen, Thanh.) [9] | Tang, Long-Cheng (Tang, Long-Cheng.) [10] | Song, Pingan (Song, Pingan.) [11]

Indexed by:

EI CSCD

Abstract:

Multifunctional intelligent fire-safe cotton fabric promises next-generation fire-fighting uniform and sensor applications. However, cotton fabrics' hygroscopicity and intrinsic flammability significantly impede their potential applications in industries. Herein, we report a superhydrophobic fireproof cotton fabric (PEI-APP-PEI-MXene) generated via sequential layer-by-layer deposition of polyethyleneimine (PEI), ammonium polyphosphate (APP), and titanium carbide (MXene), followed by hydrophobic treatment with silicone elastomer. Compared to untreated cotton, the treated cotton fabric with 10 polymolecular layers exhibits ∼43% and ∼42% reductions in the peak heat release rate and total heat release, respectively, a desired UL-94 V-0 rating, and a high limiting oxygen index (LOI) value of 39.5 vol.%. In addition to that, the treated fabrics displayed improved electromagnetic interference (EMI) shielding and motion-sensing abilities. The presented work provides a facile and effective surface modification approach to generate multifunctional cotton fabrics with promising practical applications. © 2022

Keyword:

Cotton Cotton fabrics Deposition Electromagnetic pulse Electromagnetic shielding Electromagnetic wave interference Fireproofing Hydrophobicity Signal interference Silicones

Community:

  • [ 1 ] [Liu, Lei]College of Environment and Safety Engineering, Qingdao University of Science and Technology, Qingdao; 266061, China
  • [ 2 ] [Ma, Zhewen]School of Chemistry and Materials Engineering, Zhejiang A&F University, Hangzhou; 311300, China
  • [ 3 ] [Zhu, Menghe]College of Environment and Safety Engineering, Qingdao University of Science and Technology, Qingdao; 266061, China
  • [ 4 ] [Liu, Lina]School of Chemistry and Materials Engineering, Zhejiang A&F University, Hangzhou; 311300, China
  • [ 5 ] [Dai, Jinfeng]School of Chemistry and Materials Engineering, Zhejiang A&F University, Hangzhou; 311300, China
  • [ 6 ] [Shi, Yongqian]College of Environment and Safety Engineering, Fuzhou University, Fuzhou; 350116, China
  • [ 7 ] [Gao, Jiefeng]School of Chemistry and Chemical Engineering, Yangzhou University, Yangzhou; 225002, China
  • [ 8 ] [Dinh, Toan]Centre for Future Materials, University of Southern Queensland, Springfield; 4300, Australia
  • [ 9 ] [Dinh, Toan]School of Engineering, University of Southern Queensland, Springfield; 4300, Australia
  • [ 10 ] [Nguyen, Thanh]Centre for Future Materials, University of Southern Queensland, Springfield; 4300, Australia
  • [ 11 ] [Nguyen, Thanh]School of Engineering, University of Southern Queensland, Springfield; 4300, Australia
  • [ 12 ] [Tang, Long-Cheng]College of Material, Chemistry and Chemical Engineering, Key Laboratory of Organosilicon Chemistry and Material Technology of MoE, Hangzhou Normal University, Hangzhou; 311121, China
  • [ 13 ] [Song, Pingan]Centre for Future Materials, University of Southern Queensland, Springfield; 4300, Australia
  • [ 14 ] [Song, Pingan]School of Agriculture and Environmental Science, University of Southern Queensland, Springfield; 4300, Australia

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Source :

Journal of Materials Science and Technology

ISSN: 1005-0302

Year: 2023

Volume: 132

Page: 59-68

1 1 . 2

JCR@2023

1 1 . 2 0 0

JCR@2023

ESI HC Threshold:49

JCR Journal Grade:1

CAS Journal Grade:1

Cited Count:

WoS CC Cited Count: 0

SCOPUS Cited Count: 122

ESI Highly Cited Papers on the List: 0 Unfold All

WanFang Cited Count:

Chinese Cited Count:

30 Days PV: 0

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