Dynamic Morphological Transformations in Soft Architected Materials Via Buckling Instability Encoded Heterogeneous Magnetization
Overview
Authors
Affiliations
The geometric reconfigurations in three-dimensional morphable structures have a wide range of applications in flexible electronic devices and smart systems with unusual mechanical, acoustic, and thermal properties. However, achieving the highly controllable anisotropic transformation and dynamic regulation of architected materials crossing different scales remains challenging. Herein, we develop a magnetic regulation approach that provides an enabling technology to achieve the controllable transformation of morphable structures and unveil their dynamic modulation mechanism as well as potential applications. With buckling instability encoded heterogeneous magnetization profiles inside soft architected materials, spatially and temporally programmed magnetic inputs drive the formation of a variety of anisotropic morphological transformations and dynamic geometric reconfiguration. The introduction of magnetic stimulation could help to predetermine the buckling states of soft architected materials, and enable the formation of definite and controllable buckling states without prolonged magnetic stimulation input. The dynamic modulations can be exploited to build systems with switchable fluidic properties and are demonstrated to achieve capabilities of fluidic manipulation, selective particle trapping, sensitivity-enhanced biomedical analysis, and soft robotics. The work provides new insights to harness the programmable and dynamic morphological transformation of soft architected materials and promises benefits in microfluidics, programmable metamaterials, and biomedical applications.
Addressable and perceptible dynamic reprogram of ferromagnetic soft machines.
Sun Y, Sun B, Cui X, Li W, Zhang Y, He L Nat Commun. 2025; 16(1):2267.
PMID: 40050263 PMC: 11885537. DOI: 10.1038/s41467-025-57454-w.
Wireless Peristaltic Pump for Transporting Viscous Fluids and Solid Cargos in Confined Spaces.
Sharma S, Jung L, Lee N, Wang Y, Kirk-Jadric A, Naik R Adv Funct Mater. 2025; 34(45).
PMID: 39990857 PMC: 11845220. DOI: 10.1002/adfm.202405865.
Light patterning semiconductor nanoparticles by modulating surface charges.
He X, Gu H, Ma Y, Cai Y, Jiang H, Zhang Y Nat Commun. 2024; 15(1):9843.
PMID: 39537627 PMC: 11561258. DOI: 10.1038/s41467-024-53926-7.
Xu Z, Sun H, Chen Y, Yu H, Deng C, Xu Q Nano Lett. 2024; 24(44):13945-13954.
PMID: 39360805 PMC: 11544691. DOI: 10.1021/acs.nanolett.4c03089.
Versatile, modular, and customizable magnetic solid-droplet systems.
Sun M, Wu Y, Zhang J, Zhang H, Liu Z, Li M Proc Natl Acad Sci U S A. 2024; 121(32):e2405095121.
PMID: 39088393 PMC: 11317579. DOI: 10.1073/pnas.2405095121.