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However, these two merits appear mutually exclusive in conventional designs because of their conflicting structural demands: Static liquid repellency necessitates minimal solid\u2013liquid contact, which in turn inevitably undercuts the surface's ability to resist liquid invasion exerted by the elevated pressure. Here, inspired by the <jats:italic>Springtail<\/jats:italic>, these two merits can be simultaneously realized by structuring surfaces at two size scales, with a micrometric reentrant structure providing static liquid repellency and a nanometric reentrant structure providing pressure resistance, which dexterously avoids the dilemma of their structural conflicts. The nanometric reentrants are densely packed on the micrometric ones, serving as \u201carmor\u201d that prevents liquids invasion by generating multilevel energy barriers, thus naming the surface as the armored reentrants (AR) surface. The AR surface could repel liquids with very\u00a0low surface tensions, such as silicone oil (21\u00a0mN\u00a0m<jats:sup>\u22121<\/jats:sup>), and simultaneously resist great pressure from the liquids, exemplified by enduring the impact of low\u2010surface\u2010tension liquids under a high weber number (&gt;400), the highest\u2010pressure resistance ever reported. With its scalable fabrication and enhanced performance, our design could extend the application scope of liquid\u2010repellent surfaces toward ultimate\u00a0industrial settings.<\/jats:p>","DOI":"10.1002\/smtd.202201602","type":"journal-article","created":{"date-parts":[[2023,3,15]],"date-time":"2023-03-15T08:51:42Z","timestamp":1678870302000},"update-policy":"https:\/\/doi.org\/10.1002\/crossmark_policy","source":"Crossref","is-referenced-by-count":23,"title":["Achieving Extreme Pressure Resistance to Liquids on a Super\u2010Omniphobic Surface with Armored Reentrants"],"prefix":"10.1002","volume":"8","author":[{"given":"Pengcheng","family":"Sun","sequence":"first","affiliation":[{"name":"College of Mechanical and Electrical Engineering Nanjing University of Aeronautics and Astronautics  Nanjing Jiangsu 210016 P. R. China"},{"name":"Department of Mechanical Engineering City University of Hong Kong  Hong Kong 999077 P. R. China"}]},{"given":"Yuankai","family":"Jin","sequence":"additional","affiliation":[{"name":"Department of Mechanical Engineering City University of Hong Kong  Hong Kong 999077 P. R. China"}]},{"given":"Yingying","family":"Yin","sequence":"additional","affiliation":[{"name":"Department of Mechanical Engineering City University of Hong Kong  Hong Kong 999077 P. R. China"}]},{"given":"Chenyang","family":"Wu","sequence":"additional","affiliation":[{"name":"Department of Mechanical Engineering City University of Hong Kong  Hong Kong 999077 P. R. China"}]},{"given":"Chuanhui","family":"Song","sequence":"additional","affiliation":[{"name":"Department of Oral and Maxillofacial Surgery Nanjing Stomatological Hospital Medical School of Nanjing University  Nanjing 210008 P. R. China"}]},{"given":"Yawei","family":"Feng","sequence":"additional","affiliation":[{"name":"Department of Mechanical Engineering City University of Hong Kong  Hong Kong 999077 P. R. 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China"}]},{"given":"Jie","family":"Zhang","sequence":"additional","affiliation":[{"name":"College of Mechanical and Electrical Engineering Nanjing University of Aeronautics and Astronautics  Nanjing Jiangsu 210016 P. R. China"}]},{"ORCID":"https:\/\/orcid.org\/0000-0002-3510-1122","authenticated-orcid":false,"given":"Zuankai","family":"Wang","sequence":"additional","affiliation":[{"name":"Department of Mechanical Engineering City University of Hong Kong  Hong Kong 999077 P. R. China"},{"name":"Department of Mechanical Engineering The Hong Kong Polytechnic University  Hong Kong 999077 P. R. China"}]},{"given":"Xiuqing","family":"Hao","sequence":"additional","affiliation":[{"name":"College of Mechanical and Electrical Engineering Nanjing University of Aeronautics and Astronautics  Nanjing Jiangsu 210016 P. R. 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