Wang Zelinlan, Guo Zhiguang
Hubei Collaborative Innovation Centre for Advanced Organic Chemical Materials and Ministry of Education Key Laboratory for the Green Preparation and Application of Functional Materials, Hubei University, Wuhan 430062, People's Republic of China.
Chem Commun (Camb). 2017 Dec 5;53(97):12990-13011. doi: 10.1039/c7cc07436k.
Structural colours and superwettability are of great interest due to their unique characteristics. However, the application of materials with either structural colours or superwettability is limited. Moreover, materials possessing both structural colours and superwettability are crucial for many practical applications. The combination of structural colours and superwettability can result in materials for use various applications, such as in sensors, detectors, bioassays, anti-counterfeiting, and liquid actuators, by controlling surfaces to repel or absorb liquids. Regarding superwettability and structural colours, surface texture and chemical composition are two factors for the construction of materials with superwettable structural colours. This review aims at offering a comprehensive elaboration of the mechanism, recent biomimetic research, and applications of biomimetic superwettable materials with structural colours. Furthermore, this review provides significant insight into the design, fabrication, and application of biomimetic superwettable materials with structural colours.
结构色和超润湿性因其独特特性而备受关注。然而,具有结构色或超润湿性的材料应用有限。此外,同时具备结构色和超润湿性的材料对许多实际应用至关重要。通过控制表面排斥或吸收液体,结构色与超润湿性的结合可产生适用于各种应用的材料,如传感器、探测器、生物测定、防伪和液体致动器等。关于超润湿性和结构色,表面纹理和化学成分是构建具有超润湿性结构色材料的两个因素。本综述旨在全面阐述具有结构色的仿生超润湿性材料的机理、近期仿生研究及应用。此外,本综述为具有结构色的仿生超润湿性材料的设计、制造和应用提供了重要见解。