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http://hdl.handle.net/10397/116837
| Title: | Capillarity cascade in crystalline micro-architectures for voxelated additive manufacturing | Authors: | Tan, H Zhou, C Zhuang, K Liu, C Liang, H Wang, Z Cheng, X Tang, X |
Issue Date: | 20-Aug-2025 | Source: | Cell reports physical science, 20 Aug. 2025, v. 6, no. 8, 102730 | Abstract: | Stepwise cascade behavior marks numerous captivating phenomena. In a pre-filled crystalline micro-architecture, periodic polygon droplets, which adopt unit cells’ shapes, dewet upon liquid depletion. Here, we show that, regardless of cells’ spatial arrangement, those polygon droplets implode in a sequence ranked by lattice types, forming an intercellular dewetting order that is then termed the capillarity cascade. Such behavior is derived from unique imploding pressures associated with those lattices whose magnitudes originate from temporal adhesive and cohesive competition in the three-dimensional enclosed geometry. Using crystalline lattice engineering, liquid patterns can be well shaped through the capillarity cascade, which streamlines voxelated multi-material construction that features simplicity and high resolution. The capillarity cascade in a spatially periodic layout merits untold potential spanning an array of fields, including materials assembly, energy storage, and tissue modeling. Graphical abstract: [Figure not available: see fulltext.] |
Publisher: | Cell Press | Journal: | Cell reports physical science | EISSN: | 2666-3864 | DOI: | 10.1016/j.xcrp.2025.102730 | Rights: | © 2025 The Authors. Published by Elsevier Inc. This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/). The following publication Tan, H., Zhou, C., Zhuang, K., Liu, C., Liang, H., Wang, Z., Cheng, X., & Tang, X. (2025). Capillarity cascade in crystalline micro-architectures for voxelated additive manufacturing. Cell Reports Physical Science, 6(8), 102730 is available at https://doi.org/10.1016/j.xcrp.2025.102730. |
| Appears in Collections: | Journal/Magazine Article |
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| 1-s2.0-S2666386425003297-main.pdf | 8.51 MB | Adobe PDF | View/Open |
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