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Super‐Hydrophobic Surfaces: From Natural to Artificial

Advanced Materials · 2002 · Vol. 14(24) · pp. 1857–1860
Libang FengShuhui LiYuanxin LiHong LiLiang ZhangJin ZhaiYanlin SongBing LiuLei JiangDongpo Zhu

Abstract

Abstract Super‐hydrophobic surfaces, with a water contact angle (CA) greater than 150°, have attracted much interest for both fundamental research and practical applications. Recent studies on lotus and rice leaves reveal that a super‐hydrophobic surface with both a large CA and small sliding angle (α) needs the cooperation of micro‐ and nanostructures, and the arrangement of the microstructures on this surface can influence the way a water droplet tends to move. These results from the natural world provide a guide for constructing artificial super‐hydrophobic surfaces and designing surfaces with controllable wettability. Accordingly, super‐hydrophobic surfaces of polymer nanofibers and differently patterned aligned carbon nanotube (ACNT) films have been fabricated.

Surface Modification and SuperhydrophobicityAdhesion, Friction, and Surface InteractionsAdvanced Sensor and Energy Harvesting MaterialsMaterials scienceLotus effectContact angleWettingNanotechnologyPolymerNanostructureWater repellentSurface (topology)Carbon nanotube
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