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3D-printed implantable bioelectronics enabled by anti-swelling and biphasic conductive hydrogels

Yuan Yao, Jianhua Luo, Yue Hui, Jiahua Lyu, Yubin Ke, Wenhao Shen, Yuchen Xu, Yetian Yu, Hongcai Chen, Jiadong Chen, Guang Chen, Mohamad Sawan, Liang Tao et Nan Zhou

Article de revue (2026)

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Département: Département de génie électrique
Organismes subventionnaires: National Key R&D Program of China, Zhejiang Provincial Department of Science and Technology Leading Innovation Team Support Program, National Natural Science Foundation of China, Natural Science Foundation of Zhejiang Province, ‘Pioneer’ and ‘Leading Goose’ R&D Program of Zhejiang, Westlake Center for Genome Editing, Zhejiang Provincial Natural Science Foundation of China, Australian National Health and Medical Research Council
Numéro de subvention: 2025ZD0615800, 2023R02017, 12473094, 2023YFC2308403, 32430002, LRG25C010001, 2024SSYS0032, 21200000A992410, 82402676, LQ23C010001, APP2026797
URL de PolyPublie: https://publications.polymtl.ca/81849/
Titre de la revue: Nature Materials
Maison d'édition: Nature Portfolio
DOI: 10.1038/s41563-026-02691-7
URL officielle: https://doi.org/10.1038/s41563-026-02691-7
Date du dépôt: 29 sept. 2026 13:17
Dernière modification: 29 sept. 2026 13:17
Citer en APA 7: Yao, Y., Luo, J., Hui, Y., Lyu, J., Ke, Y., Shen, W., Xu, Y., Yu, Y., Chen, H., Chen, J., Chen, G., Sawan, M., Tao, L., & Zhou, N. (2026). 3D-printed implantable bioelectronics enabled by anti-swelling and biphasic conductive hydrogels. Nature Materials. https://doi.org/10.1038/s41563-026-02691-7

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