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Advanced Materials Technologies· 2026Q1

Yönlü Sıvı Kendi Kendine Taşınmasını Sağlayan Anizotropik Piramit Dizili Biyo-esinlenmiş Yüzey

Bioinspired Surface Enabled by Anisotropic Pyramid Structure Arrays for Directional Liquid Self‐Transport

Yi‐Ke Wang, Chaowei Sun, Pin Lv, Shengjun An ve diğerleri

Kısa özet

Anizotropik ters piramit oluk dizilerine sahip yeni bir biyo-esinlenmiş yüzey, basit bir 3B baskı ve döküm kalıplama işlemiyle çeşitli sıvıların (su ve kan dahil) hızlı, sürekli ve yüksek derecede tek yönlü kendi kendine taşınmasını sağlar.

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Özet (abstract)

ABSTRACT Inspired by the phenomenon of directional liquid transport in natural organisms, various bionic surfaces with customized topological structures have been designed and fabricated, contributing to advances in such fields as microfluidics, microreactors, energy harvesting, biomedicine, etc. Despite extensive progress, bionic surfaces with directional liquid self‐transport capabilities still suffer from high technical thresholds, cumbersome fabrication processes, and contamination‐induced failure, limiting their widespread applications. In this work, a bioinspired surface with anisotropic inverted pyramid groove arrays was developed to achieve directional self‐transport of diverse liquids, from water to blood. Bioinspired by the nepenthes alata peristome, a discretely anisotropic inverted pyramid model was theoretically constructed, and then the surface with inverted pyramid groove arrays was efficiently and simply prepared via three‐dimensional (3D) printing and cast molding. This bioinspired surface exhibited rapid, long‐distance, and continuous liquid self‐transport with high unidirectionality under the optimal structural parameters. Moreover, this bioinspired surface was innovatively applied to achieve efficient removal of blood cells from diluted blood without complex operations, providing a proof‐of‐concept foundation for future applications of bioinspired surfaces in microfluidics, plasma separation, and biomedical detection.

Yazarların özeti; kaynağından alınmıştır. Advanced Materials Technologies, 2026 · DOI ↗

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