Water-repellent Hybrid Nanowire and Micro-scale Denticle Structures on Flexible Substrates of Effective Air Retention

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Water-repellent Hybrid Nanowire and Micro-scale Denticle Structures on  Flexible Substrates of Effective Air Retention

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Water-repellent Hybrid Nanowire and Micro-scale Denticle Structures on  Flexible Substrates of Effective Air Retention

Progress in biomimetic leverages for marine antifouling using nanocomposite coatings - Journal of Materials Chemistry B (RSC Publishing) DOI:10.1039/C9TB02119A

Water-repellent Hybrid Nanowire and Micro-scale Denticle Structures on  Flexible Substrates of Effective Air Retention

3D Printing‐Enabled Nanoparticle Alignment: A Review of Mechanisms and Applications - Xu - 2021 - Small - Wiley Online Library

Water-repellent Hybrid Nanowire and Micro-scale Denticle Structures on  Flexible Substrates of Effective Air Retention

Multistage Gradient Bioinspired Riblets for Synergistic Drag Reduction and Efficient Antifouling

Water-repellent Hybrid Nanowire and Micro-scale Denticle Structures on  Flexible Substrates of Effective Air Retention

Multistage Gradient Bioinspired Riblets for Synergistic Drag Reduction and Efficient Antifouling

Water-repellent Hybrid Nanowire and Micro-scale Denticle Structures on  Flexible Substrates of Effective Air Retention

Self-Cleaning Materials

Water-repellent Hybrid Nanowire and Micro-scale Denticle Structures on  Flexible Substrates of Effective Air Retention

Applied Sciences, Free Full-Text

Water-repellent Hybrid Nanowire and Micro-scale Denticle Structures on  Flexible Substrates of Effective Air Retention

Recent advances of bioinspired functional materials with specific wettability: from nature and beyond nature - Nanoscale Horizons (RSC Publishing) DOI:10.1039/C8NH00223A

Water-repellent Hybrid Nanowire and Micro-scale Denticle Structures on  Flexible Substrates of Effective Air Retention

우수 논문상 수상: 안성빈 석박통합과정, 교내 나노과학기술연구소

Water-repellent Hybrid Nanowire and Micro-scale Denticle Structures on  Flexible Substrates of Effective Air Retention

Micromachines, Free Full-Text

Water-repellent Hybrid Nanowire and Micro-scale Denticle Structures on  Flexible Substrates of Effective Air Retention

Micromachines, Free Full-Text

Water-repellent Hybrid Nanowire and Micro-scale Denticle Structures on  Flexible Substrates of Effective Air Retention

Underwater Drag-Reducing Effect of Superhydrophobic Submarine Model

Water-repellent Hybrid Nanowire and Micro-scale Denticle Structures on  Flexible Substrates of Effective Air Retention

Biomimetic Superhydrophobic Materials Construct from Binary Structure: A Review on Design, Properties, and Applications - Li - 2023 - Advanced Materials Interfaces - Wiley Online Library