- 鄭詠梅 教授
- 北京航空航天大學(xué) 化學(xué)學(xué)院
- 網(wǎng)址: zhengyongmei.polymer.cn 訪問量:757794
- ACS Nano: High-efficiency fog collector
- 國際仿生工程學(xué)會
- 鄭詠梅教授研究進展主頁
- 中國聚合物網(wǎng)
- 中國流變網(wǎng)
- 中國化學(xué)儀器網(wǎng)
- 化學(xué)化工論壇
- 通信地址:北京市昌平區(qū)高教園南三街9號北京航空航天大學(xué)實驗七號樓409
- 郵編:102206
- 電話:---
- 傳真:
- Email:[email protected]
關(guān)鍵字:Anti-icing
論文來源:期刊
發(fā)表時間:2022年
We present a robustly durably corrosive superhydrophobic coating with photothermal effect (DCSCPE) for anti-icing/de-icing performance that can be designed by using as-synthetized Fe 3 O 4 composite nanoparticles (NPs), along with protective coat (polydimethylsiloxane) and bonding basecoat (epoxy). In this design, the Fe 3 O 4 nanoparticles (NPs) are optimized in dual-size: 200 /20 nm and weight ratio:1/2 to achieve both micro/nano-structures and superior photothermal conversion properties (up to 14.4 ? C/min) and light-to-heat conversion
efficiency (62.38%), which is superior to other DCSCPE coatings. As a result, the DCSCPE 1/2 takes on excellent superhydrophobicity under corrosion for 20 days by pH ~ 1–14 and efficient de-icing performance, i.e., the ice-covering is melted in short time of 790 s under sunlight illumination and the DCSCPE 1/2 surfaces show a high deicing rate (~1.96 kg m ?2 h ?1 ), which is benefited from synergy effect that is resulted from the excellent micro/
nanostructures and the high-efficiently photothermal ability of as-synthetized Fe 3 O 4 composite NPs. The stability on chemical and mechanical interface of micro/ nanostructures can be further demonstrated to greatly favor the robust anti-icing/de-icing performance for a long term. This studying is considerably significant to design the novel protective materials on anti-icing, anti-corrosion that can be extended into practical applications.