Microstructure and Water Vapor Barrier Performance of Organic‐Bridged Polysilsesquioxane/Carbon Quantum Dots Composite Coatings

Author:

Zhang Ce12ORCID,Ma Cong1,Yao Xiaowei1,Lai Xiaojuan1,Yang Xiaomei1,Zhang Wanbin2,Zhang Guanghua1

Affiliation:

1. Key Laboratory of Auxiliary Chemistry and Technology for Chemical Industry Ministry of Education College of Chemistry and Chemical Engineering Shaanxi University of Science and Technology Xi'an 710021 China

2. Shaanxi Collaborative Innovation Center of Industrial Auxiliary Chemistry and Technology Institute of Frontier Science and Technology Transfer Shaanxi University of Science and Technology Xi'an 710021 China

Abstract

Developing siloxane‐based coatings with excellent water vapor barrier ability is of great importance due to their wide applications for various optical‐related fields. To improve the water vapor barrier ability of polysilsesquioxane coatings, this research proposes a strategy of introducing carbon quantum dots (CQDs) into organic‐bridged polysilsesquioxane coatings to enhance their water vapor barrier property. The CQDs are prepared by the pyrolysis of citric acid and then the composite coatings are prepared by thioether‐ester‐bridged silsesquioxane precursor in situ hydrolysis and condensation in the presence of CQDs. The experimental results show that the CQDs disperse well in the polysilsesquioxane matrix which is conducive to provide long diffusion pathway of water vapor molecules and also introduce individual “bubble pores” into the composite coatings. Thus‐obtained composite coatings not only show fivefold enhancement in water vapor barrier ability compared to the polysilsesquioxane coating without CQDs, but also perform good light transparence and good UV radiation‐resistant property, which would satisfy the requirements of optical‐related moisture‐resistant application fields.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

Condensed Matter Physics,General Materials Science

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