High water content hydrogels with instant mechanical recovery, anti-high temperature and anti-high ionic strength properties

被引:3
作者
Hou, Shengzhen [1 ,2 ]
Wang, Xiujun [1 ,2 ]
Zhang, Jian [1 ,2 ]
机构
[1] State Key Lab Offshore Oil Exploitat, Beijing 100028, Peoples R China
[2] CNOOC Res Inst Co Ltd, Beijing 100028, Peoples R China
基金
中国国家自然科学基金;
关键词
Clay; Chitosan; Coassembly; Self-healing; AQUEOUS GELATIN SOLUTIONS; CHITOSAN; NANOPARTICLES; LAPONITE; CLAY;
D O I
10.1016/j.colsurfa.2021.126456
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
In this work, we show how simple mixing of mineral clay materials and a biopolymer chitosan to afford hydrogel composites with significantly enhanced performances in instant mechanical recovery and self-healing, anti-high temperature and anti-high ionic strength activities. Benefited by the electrostatic attraction between anionic clay and cationic chitosan, molecular level coassembly was achieved, which gave rise to a robust and rapidly selfhealable hydrogel. Synergistic effect between components enhanced the mechanical strength more than 10 folds and shortened the self-healable time more than 40 folds (from 220 s to less than 5 s). In addition, the binary hydrogel show extremely enhanced anti-temperature and ionic strength properties. This study offers a feasible and dramatically facile protocol to build functional hydrogel materials using commercially available mineral and biopolymer, which have promising applications in special areas such as underground oil and gas engineering.
引用
收藏
页数:8
相关论文
共 50 条
  • [1] Construction and Properties of Hydrophobic Association Hydrogels with High Mechanical Strength and Reforming Capability
    Jiang, Guoqing
    Liu, Chang
    Liu, Xiaoli
    Zhang, Guohui
    Yang, Meng
    Liu, Fengqi
    MACROMOLECULAR MATERIALS AND ENGINEERING, 2009, 294 (12) : 815 - 820
  • [2] Nanocomposite Hydrogels with High Mechanical Strength and High Swelling Ratio by RAFT Polymerization
    Zhang, Ping
    Wang, Xinyu
    Li, Shipu
    Dai, Honglian
    INTERNATIONAL JOURNAL OF POLYMERIC MATERIALS AND POLYMERIC BIOMATERIALS, 2013, 62 (01) : 10 - 16
  • [3] Biocompatible hydrogels based on chitosan, cellulose/starch, PVA and PEDOT:PSS with high flexibility and high mechanical strength
    Dodda, Jagan Mohan
    Azar, Mina Ghafouri
    Belsky, Petr
    Slouf, Miroslav
    Broz, Antonin
    Bacakova, Lucie
    Kadlec, Jaroslav
    Remis, Tomas
    CELLULOSE, 2022, 29 (12) : 6697 - 6717
  • [4] Network structure and compositional effects on tensile mechanical properties of hydrophobic association hydrogels with high mechanical strength
    Jiang, Guoqing
    Liu, Chang
    Liu, Xiaoli
    Chen, Qingrui
    Zhang, Guohui
    Yang, Meng
    Liu, Fengqi
    POLYMER, 2010, 51 (06) : 1507 - 1515
  • [5] Transparent, flexible, and glycerol-free TEMPO-oxidized starch/ montmorillonite nanocomposites with high mechanical strength and high anti-UV properties
    Wu, Chun-Nan
    Lai, Hsi-Mei
    CARBOHYDRATE POLYMER TECHNOLOGIES AND APPLICATIONS, 2025, 9
  • [6] Radiation synthesis of polymer/clay nanocomposite hydrogels with high mechanical strength
    Ma Rong-Fang
    Yuan Jie
    Li Can-Can
    Peng Jing
    Dung Zhen
    Xu Ling
    Li Jiu-Qiang
    Zhai Mao-Lin
    NUCLEAR SCIENCE AND TECHNIQUES, 2014, 25 (06)
  • [7] Radiation synthesis of polymer/clay nanocomposite hydrogels with high mechanical strength
    马荣芳
    袁劼
    李灿灿
    彭静
    董珍
    许零
    李久强
    翟茂林
    Nuclear Science and Techniques, 2014, 25 (06) : 42 - 49
  • [8] Hybrid nanocomposite hydrogels with high strength and excellent self-recovery performance
    Yang, Jia
    Zhu, Lin
    Yan, Xiaoqiang
    Wei, Dandan
    Qin, Gang
    Liu, Baozhong
    Liu, Shuzheng
    Chen, Qiang
    RSC ADVANCES, 2016, 6 (64): : 59131 - 59140
  • [9] Microstructure, mechanical and swelling properties of microgel composite hydrogels with high microgel content and a microgel cluster crosslinker
    Zhao, Fang
    Qin, Xuping
    Feng, Shengyu
    RSC ADVANCES, 2015, 5 (56) : 45113 - 45121
  • [10] High strength and anti-fatigue nanocomposite hydrogels prepared via self-initiated free radical polymerization triggered by daylight
    Xu, Bo
    Liu, Yuwei
    Li, Yu
    Wang, Lanlan
    Li, Nannan
    Fu, Min
    Wang, Ping
    Wang, Qiang
    NEW JOURNAL OF CHEMISTRY, 2018, 42 (14) : 11796 - 11803