Facile transition of surface wettability in hierarchical silica framework: from Wenzel to Cassie-Baxter regime

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초록

Facile control of surface wettability is demonstrated by introducing a scalable and cost-effective method using candle soot as a hierarchical template. Through soot deposition, silica sol-gel coating, calcination, and self-assembled monolayer (SAM) treatment, surfaces with tunable wettability from superhydrophobic (contact angle >150 degrees) to superhydrophilic (contact angle = 0 degrees) were fabricated. The hierarchical roughness introduced by soot deposition was instrumental for achieving radically biased surface wettability. Silica coating transformed the soot-coated surfaces to superhydrophilic by increasing surface energy, while calcination created a porous silica framework. SAM treatment restored superhydrophobicity by lowering surface energy and re-establishing the Cassie-Baxter wetting regime. Optimized soot deposition times retained transparency, ideal for optical applications, and mechanical stress testing caused a transition from Cassie-Baxter to Wenzel regime, exhibiting pinning of water droplet. This versatile approach enabled designed surface wettability depending on target purposes. Graphical abstractVersatile surface wettability control with candle soot template.

키워드

Surface wettabilitySuperhydrophobicSuperhydrophilicDroplet pinningSELF-ASSEMBLED MONOLAYERSSUPERHYDROPHOBIC SURFACES
제목
Facile transition of surface wettability in hierarchical silica framework: from Wenzel to Cassie-Baxter regime
저자
Myoung, SuminLee, GiwonKim, Daegun
DOI
10.1007/s13233-025-00396-5
발행일
2025-08
유형
Article; Early Access
저널명
Macromolecular Research
33
8
페이지
1117 ~ 1123