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PUBMED FOR HANDHELDS

Journal Abstract Search


233 related items for PubMed ID: 37553785

  • 1.
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  • 2. Nanomaterial based PVA nanocomposite hydrogels for biomedical sensing: Advances toward designing the ideal flexible/wearable nanoprobes.
    Karimzadeh Z, Mahmoudpour M, Rahimpour E, Jouyban A.
    Adv Colloid Interface Sci; 2022 Jul; 305():102705. PubMed ID: 35640315
    [Abstract] [Full Text] [Related]

  • 3. Ultrastrong and Tough Urushiol-Based Ionic Conductive Double Network Hydrogels as Flexible Strain Sensors.
    Lin F, Zhu Y, You Z, Li W, Chen J, Zheng X, Zheng G, Song Z, You X, Xu Y.
    Polymers (Basel); 2023 Jul 28; 15(15):. PubMed ID: 37571113
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  • 4. Self-Healing, Self-Adhesive Silk Fibroin Conductive Hydrogel as a Flexible Strain Sensor.
    Zheng H, Lin N, He Y, Zuo B.
    ACS Appl Mater Interfaces; 2021 Aug 25; 13(33):40013-40031. PubMed ID: 34375080
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  • 5. Cellulose nanocrystalline hydrogel based on a choline chloride deep eutectic solvent as wearable strain sensor for human motion.
    Wang H, Li J, Yu X, Yan G, Tang X, Sun Y, Zeng X, Lin L.
    Carbohydr Polym; 2021 Mar 01; 255():117443. PubMed ID: 33436232
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  • 6. Tough, recyclable and biocompatible carrageenan-modified polyvinyl alcohol ionic hydrogel with physical cross-linked for multimodal sensing.
    Zeng L, Liu B, Duan L, Gao G.
    Int J Biol Macromol; 2023 Dec 31; 253(Pt 4):126954. PubMed ID: 37734518
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  • 7. Naturally sourced hydrogels: emerging fundamental materials for next-generation healthcare sensing.
    Wang Z, Wei H, Huang Y, Wei Y, Chen J.
    Chem Soc Rev; 2023 May 09; 52(9):2992-3034. PubMed ID: 37017633
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  • 8. Flexible conductive hydrogel fabricated with polyvinyl alcohol, carboxymethyl chitosan, cellulose nanofibrils, and lignin-based carbon applied as strain and pressure sensor.
    Li M, Tu Q, Long X, Zhang Q, Jiang H, Chen C, Wang S, Min D.
    Int J Biol Macromol; 2021 Jan 01; 166():1526-1534. PubMed ID: 33181212
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  • 9. Flexible Hybrid Wearable Sensors for Pressure and Thermal Sensing Based on a Double-Network Hydrogel.
    Zhang Z, Luo Y, Li Y, Ding S, Liu K, Luo B.
    ACS Appl Bio Mater; 2023 Nov 20; 6(11):5114-5123. PubMed ID: 37941091
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  • 11. High Ion-Conducting PVA Nanocomposite Hydrogel-Based Wearable Piezoelectric and Triboelectric Sensors for Harsh Environments.
    Liu K, Zhao Z, Zheng S, Liu A, Wang Y, Chen L, Miao Q.
    Biomacromolecules; 2024 Jul 08; 25(7):4384-4393. PubMed ID: 38822786
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  • 15. Flexible Electronics toward Wearable Sensing.
    Gao W, Ota H, Kiriya D, Takei K, Javey A.
    Acc Chem Res; 2019 Mar 19; 52(3):523-533. PubMed ID: 30767497
    [Abstract] [Full Text] [Related]

  • 16. A Multifunctional, Self-Healing, Self-Adhesive, and Conductive Sodium Alginate/Poly(vinyl alcohol) Composite Hydrogel as a Flexible Strain Sensor.
    Zhao L, Ren Z, Liu X, Ling Q, Li Z, Gu H.
    ACS Appl Mater Interfaces; 2021 Mar 10; 13(9):11344-11355. PubMed ID: 33620195
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  • 17. A multi-model, large range and anti-freezing sensor based on a multi-crosslinked poly(vinyl alcohol) hydrogel for human-motion monitoring.
    Gao Y, Peng J, Zhou M, Yang Y, Wang X, Wang J, Cao Y, Wang W, Wu D.
    J Mater Chem B; 2020 Dec 23; 8(48):11010-11020. PubMed ID: 33188676
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  • 18. A porous self-healing hydrogel with an island-bridge structure for strain and pressure sensors.
    Zhang Y, Ren E, Li A, Cui C, Guo R, Tang H, Xiao H, Zhou M, Qin W, Wang X, Liu L.
    J Mater Chem B; 2021 Jan 28; 9(3):719-730. PubMed ID: 33306084
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  • 19. Mechanically Ultra-Robust, Elastic, Conductive, and Multifunctional Hybrid Hydrogel for a Triboelectric Nanogenerator and Flexible/Wearable Sensor.
    Long Y, Wang Z, Xu F, Jiang B, Xiao J, Yang J, Wang ZL, Hu W.
    Small; 2022 Nov 28; 18(47):e2203956. PubMed ID: 36228096
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