Google Scholar:
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&共同第一作者; *通讯作者。
Zhang, YC., Huang, W., Liu, M., Yu, J.*, Gao, H.* (2025). Achieving symmetric snap-through buckling via designed magnetic actuation. Science Advances, 11(20), eadw1259.
Zhang, YC., Huang, W., Liu, M., Yu, J.*, Gao, H.* (2025). Snap-through buckling in heavy hard magnetic elastica. Proceedings of the Royal Society A, 481(2311), 20250008.
Lao, J.&, Jiao, Y.&, Zhang, YC.&*, Xu, H., Wang, Y., Ma, Y. *, Feng X*, Yu, J. * (2025). Intrinsically Adhesive and Conductive Hydrogel Bridging the Bioelectronic–Tissue Interface for Biopotentials Recording. ACS nano, 19(8), 7755-7766.
Jiang, X. &, Zhang, YC. &*, Li, Z., Ge, L., Chen, H., Li, X., ... Gao, H.*, Yu, J. * (2025). Mechanically Strong, Chemical Recycling Supramolecular Elastomers via Boron-Based Dynamic Bonds. CCS Chemistry, 1-14.
Zhang, YC., Ma, Y., Yu, J. * , Gao, H.* (2023). Non-contact actuated snap-through buckling of a pre-buckled bistable hard-magnetic elastica. International Journal of Solids and Structures, 281, 112413.
Zhang, YC., Tan, Y., Lao, J., Gao, H., Yu, J. * (2023). Hydrogels for flexible electronics. ACS nano, 17(11), 9681-9693.
Wang, Z. &, Shi, N. &, Zhang, YC., Zheng, N., Li, H., Jiao, Y., ... Feng, X. * (2023). Conformal in-ear bioelectronics for visual and auditory brain-computer interfaces. Nature Communications, 14(1), 4213.
Jiao, Y., Zhang, YC., Feng, H., Li, H., Wang, Z., Wang, P., ... Feng, X. * (2023). A multifunctional bioelectronic device with switchable rigidity and reconfigurable shapes for comprehensive diagnosis. Advanced Electronic Materials, 9(7), 2201343.
Zhang, YC., Jiao, Y., Wu, J., Ma, Y.*, & Feng, X.* (2020). Configurations evolution of a buckled ribbon in response to out-of-plane loading. Extreme Mechanics Letters, 34, 100604.
Zhang, YC., Zheng, N., Cao, Y., Wang, F., Wang, P., Ma, Y., ... Feng, X. *(2019). Climbing-inspired twining electrodes using shape memory for peripheral nerve stimulation and recording. Science advances, 5(4), eaaw1066.
Zhang, YC., Wang, F., Ma, Y.*, Feng, X.* (2019). Buckling configurations of stiff thin films tuned by micro-patterns on soft substrate. International Journal of Solids and Structures, 161, 55-63.
Zhang, YC., Wu, J., Ma, Y., Chen, H., Chen, Y., Lu, B., Feng, X. * (2018). A finite deformation theory for the climbing habits and attachment of twining plants. Journal of the Mechanics and Physics of Solids, 116, 171-184.