Silicon gels with sustainable self-replenishment: Fluid drag reduction through viscosity dependency
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Elsevier BV
Reference55 articles.
1. Air retention under water by the floating fern salvinia: the crucial role of a trapped air layer as a pneumatic spring;Gandyra;Small,2020
2. Focus on bioinspired textured surfaces toward fluid drag reduction: recent progresses and challenges;Tian;Adv Eng Mater,2022
3. Underwater drag reduction and buoyancy enhancement on biomimetic antiabrasive superhydrophobic coatings;Wang;ACS Appl Mater Interfaces,2021
4. Facile, scalable, and low-cost superhydrophobic coating for frictional drag reduction with anti-corrosion property;Fakhri;Tribol Int,2023
5. Bioinspired low-friction surface coating with lubricant-infused spherical cavities for sustainable drag reduction;Kim;Appl Surf Sci,2023
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