Anisotropic Conductive Hydrogels with High Water Content

被引:63
|
作者
Qian, Chen [1 ]
Higashigaki, Tatsuya [1 ]
Asoh, Taka-Aki [1 ]
Uyama, Hiroshi [1 ]
机构
[1] Osaka Univ, Dept Appl Chem, Suita, Osaka 5650871, Japan
关键词
bacterial cellulose; conductive hydrogel; anisotropy; high water content; poly(3; poly(N-isopropylacrylamide); 4-ethylenedioxythiophene)-polystyrene sulfonate (PEDOT/PSS); BACTERIAL CELLULOSE; ELECTROCONDUCTIVE HYDROGELS; ALIGNMENT;
D O I
10.1021/acsami.0c06853
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
High water content is hard to be achieved in conductive hydrogels because a mass of conductive constituent is needed to form an internal conductive pathway. Here, we developed anisotropic electrically conductive hydrogels with high water content based on bacterial cellulose (BC). Polystyrene sulfonate (PSS) was grafted to the acryloyl chloride-modified BC to provide a template for the subsequent synthesis of poly(3,4-ethylenedioxythiophene) (PEDOT). The BC-g-PSS/PEDOT hydrogels obtained were electrically conductive owing to the immobilization of PEDOT on the surface of cellulose nanofibers. The hydrogels exhibited an electrical conductivity of 0.24 S cm(-1). Further, they demonstrated suppleness in compression (compiled to external compression stress >2.8 MPa and recoverable), inherent high water content (similar to 95.0 wt %), and anisotropy (anisotropic index of 4.1 in conductivity) from BC. The incorporation of a thermoresponsive poly(N-isopropylacrylamide) (PNIPAAm) hydrogel into the BC-g-PSS/PEDOT hydrogel demonstrated a uniaxial thermoresponsive actuation with resistance change. The expected size and resistance change were only observed in the direction vertical to the cellulose nanofiber layers. These hydrogels could accommodate further developments in novel tissue engineering scaffolds, implantable biosensors, and smart soft electronic devices.
引用
收藏
页码:27518 / 27525
页数:8
相关论文
共 50 条
  • [31] High-water-content and resilient PEG-containing hydrogels with low fibrotic response
    Zhang, Yu
    An, Duo
    Pardo, Yehudah
    Chiu, Alan
    Song, Wei
    Liu, Qingsheng
    Zhou, Fang
    McDonough, Sean P.
    Ma, Minglin
    ACTA BIOMATERIALIA, 2017, 53 : 100 - 108
  • [32] Metal-Free and Stretchable Conductive Hydrogels for High Transparent Conductive Film and Flexible Strain Sensor with High Sensitivity
    Chen, Xiaoling
    He, Miaomiao
    Zhang, Xuhua
    Lu, Tiao
    Hao, Weizhen
    Zhao, Yansheng
    Liu, Yongmei
    MACROMOLECULAR CHEMISTRY AND PHYSICS, 2020, 221 (10)
  • [33] High Thermal Performance Package with Anisotropic Thermal Conductive Material
    Hu, Ian
    Ho, Jia-Rung
    Yang, Jin-Feng
    Shih, Meng-Kai
    Tarng, David
    Hung, Chih-Pin
    2017 IEEE 67TH ELECTRONIC COMPONENTS AND TECHNOLOGY CONFERENCE (ECTC 2017), 2017, : 1348 - 1354
  • [34] Magnetically aligned anisotropic conductive adhesive for high frequency interconnects
    Huang, YL
    Gong, X
    Bruemmer, T
    Khanna, SK
    Chappell, WJ
    2005 IEEE MTT-S International Microwave Symposium, Vols 1-4, 2005, : 861 - 864
  • [35] Soft, stretchable conductive hydrogels for high-performance electronic implants
    Rahman, Md Saifur
    Shon, Ahnsei
    Joseph, Rose
    Pavlov, Anton
    Stefanov, Alex
    Namkoong, Myeong
    Guo, Heng
    Bui, Dangnghi
    Master, Reid
    Sharma, Archita
    Lee, Jennifer
    Rivas, Melissa
    Elati, Ananya
    Jones-Hall, Yava
    Zhao, Feng
    Park, Hangue
    Hook, Michelle A.
    Tian, Limei
    SCIENCE ADVANCES, 2025, 11 (12):
  • [36] Semicrystalline Conductive Hydrogels for High-Energy and Stable Flexible Supercapacitors
    Lu, Han
    Li, Yuanheng
    Chen, Qing
    Chen, Lili
    Zhang, Ning
    Ma, Mingming
    ACS APPLIED ENERGY MATERIALS, 2019, 2 (11) : 8163 - 8172
  • [37] Metal ion mediated conductive hydrogels with low hysteresis and high resilience
    Chen, Zhiwei
    Chen, Xionggang
    Wang, Haidong
    Yang, Tingting
    Huang, Jinxia
    Guo, Zhiguang
    MATERIALS TODAY PHYSICS, 2025, 51
  • [38] Anisotropic, ultra-sensitive, self-adhesive, biocompatible, and conductive hydrogels prepared for wearable sensors
    Wang, Wentang
    Deng, Xinyue
    Tian, Zhipeng
    Luo, Chunhui
    EUROPEAN POLYMER JOURNAL, 2023, 196
  • [39] Conductive hydrogels for tissue repair
    Liang, Yongping
    Qiao, Lipeng
    Qiao, Bowen
    Guo, Baolin
    CHEMICAL SCIENCE, 2023, 14 (12) : 3091 - 3116
  • [40] Elastomeric conductive hybrid hydrogels with continuous conductive networks
    Hu, Shiqian
    Zhou, Lei
    Tu, Lingjie
    Dai, Cong
    Fan, Lei
    Zhang, Kejia
    Yao, Tiantian
    Chen, Junqi
    Wang, Zhengao
    Xing, Jun
    Fu, Ruming
    Yu, Peng
    Tan, Guoxin
    Du, Jianqiang
    Ning, Chengyun
    JOURNAL OF MATERIALS CHEMISTRY B, 2019, 7 (15) : 2389 - 2397