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Liquid Crystal Elastomers

Bibliographic References tagged with Liquid Crystal Elastomers

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Li S, Lerch MM, Waters JT, Deng B, Martens RS, Yao Y, Kim DY, Bertoldi K, Grinthal A, Balazs AC, et al. Self-regulated non-reciprocal motions in single-material microstructures. Nature. 2022;605(7908):76–83. doi:10.1038/s41586-022-04561-z
Li S, Lerch MM, Waters JT, Deng B, Martens RS, Yao Y, Kim DY, Bertoldi K, Grinthal A, Balazs AC, et al. Self-regulated non-reciprocal motions in single-material microstructures. Nature. 2022;605(7908):76–83. doi:10.1038/s41586-022-04561-z
Thaggard GC, Park KC, Lim J, Kankanamalage BKPM, Haimerl J, Wilson GR, McBride MK, Forrester KL, Adelson ER, Arnold VS, et al. Breaking the photoswitch speed limit. Nature communications. 2023;14(1):7556. doi:10.1038/s41467-023-43405-w
Thaggard GC, Park KC, Lim J, Kankanamalage BKPM, Haimerl J, Wilson GR, McBride MK, Forrester KL, Adelson ER, Arnold VS, et al. Breaking the photoswitch speed limit. Nature communications. 2023;14(1):7556. doi:10.1038/s41467-023-43405-w
Li S, Aizenberg M, Lerch MM, Aizenberg J. Programming Deformations of 3D Microstructures: Opportunities Enabled by Magnetic Alignment of Liquid Crystalline Elastomers. Accounts of materials research. 2023;4(12):1008–1019. doi:10.1021/accountsmr.3c00101
Li S, Aizenberg M, Lerch MM, Aizenberg J. Programming Deformations of 3D Microstructures: Opportunities Enabled by Magnetic Alignment of Liquid Crystalline Elastomers. Accounts of materials research. 2023;4(12):1008–1019. doi:10.1021/accountsmr.3c00101
Yao Y, Wilborn AM, Lemaire B, Trigka F, Stricker F, Weible AH, Li S, Bennett RKA, Cheung TC, Grinthal A, et al. Programming liquid crystal elastomers for multistep ambidirectional deformability. Science (New York, N.Y.). 2024;386(6726):1161–1168. doi:10.1126/science.adq6434
Yao Y, Wilborn AM, Lemaire B, Trigka F, Stricker F, Weible AH, Li S, Bennett RKA, Cheung TC, Grinthal A, et al. Programming liquid crystal elastomers for multistep ambidirectional deformability. Science (New York, N.Y.). 2024;386(6726):1161–1168. doi:10.1126/science.adq6434
Wang S, Li S, Zhao W, Zhou Y, Wang L, Aizenberg J, Zhu P. Programming hierarchical anisotropy in microactuators for multimodal actuation. Lab on a chip. 2024;24(17):4073–4084. doi:10.1039/d4lc00369a
Wang S, Li S, Zhao W, Zhou Y, Wang L, Aizenberg J, Zhu P. Programming hierarchical anisotropy in microactuators for multimodal actuation. Lab on a chip. 2024;24(17):4073–4084. doi:10.1039/d4lc00369a