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Updated: Jun 14, 2025

Rendering SiO2/Si Surfaces Omniphobic by Carving Gas-Entrapping Microtextures Comprising Reentrant and Doubly Reentrant Cavities or Pillars
Published on: February 11, 2020
Nacre-Inspired Chitosan/CaCO3 Films with High Transparency and Underwater Superoleophobic Property for Efficient
Tianmeng Ye1, Yulan Huang1, Qi Li1
1State Key Laboratory of Precision Blasting, Jianghan University, Wuhan 430056, P. R. China.
Abstract:
Numerous natural architectures achieve multifunctionality through mild formation processes. Natural nacre is composed of about 90 wt % calcium carbonate aragonite flakes and 5 wt % chitin, exhibiting excellent mechanical properties, optical transmittance, and underwater superoleophobicity. In this work, a nacre-inspired biomineralized film with high transparency and mechanically robust underwater superoleophobicity was synthesized through Mg2+-PAA coordinated regulation under ambient conditions. The nacre-inspired film has light transmittance (exceeding 80%), hardness (1.71 ± 0.08 GPa), Young's modulus (40.9 ± 0.3 GPa), and contact angle of underwater-oil droplets (151.2° ± 1.8°) comparable to natural nacre. Notably, this substrate-independent material can be directly mineralized on diverse surfaces, including plastics, glass, and polymer meshes, while maintaining efficient oil-water separation capability. By deconstructing the multiscale structure of biomaterials, this study establishes a novel paradigm for fabricating multifunctional composites through environmentally benign processes.

