One Step and In Situ Synthesis of Edible Lubricant-infused Surface Using All-in-one Solution
Author:
Funder
National Outstanding Youth Science Fund Project of National Natural Science Foundation of China
Publisher
Springer Science and Business Media LLC
Subject
Bioengineering,Biophysics,Biotechnology
Link
https://link.springer.com/content/pdf/10.1007/s42235-023-00379-1.pdf
Reference41 articles.
1. Zhang, P. F., Chen, H. W., Zhang, L. W., Ran, T., & Zhang, D. Y. (2015). Transparent self-cleaning lubricant-infused surfaces made with large-area breath figure patterns. Applied Surface Science, 355, 1083–1090.
2. Wang, N., Xiong, D. S., Pan, S., Wang, K., Shi, Y., & Deng, Y. L. (2017). Robust superhydrophobic coating and the anti-icing properties of its lubricants-infused-composite surface under condensing condition. New Journal of Chemistry, 41(4), 1846–1853.
3. Liu, Q., Yang, Y., Huang, M., Zhou, Y. X., Liu, Y. Y., & Liang, X. D. (2015). Durability of a lubricant-infused electrospray silicon rubber surface as an anti-icing coating. Applied Surface Science, 346, 68–76.
4. Jing, X. S., & Guo, Z. G. (2019). Fabrication of biocompatible super stable lubricant-immobilized slippery surfaces by grafting a polydimethylsiloxane brush: excellent boiling water resistance, hot liquid repellency and long-term slippery stability. Nanoscale, 11(18), 8870–8881.
5. Li, H., Peng, Y. J., Zhang, K., Li, P. C., Xin, L., Yin, X. L., & Yu, S. R. (2022). Spontaneous self-healing bio-inspired lubricant-infused coating on pipeline steel substrate with reinforcing anti-corrosion, anti-fouling, and anti-scaling properties. Journal of Bionic Engineering, 19(6), 1601–1614.
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