Xiang Huiying, Yuan Yuan, Zhang Cheng, Dai Xu, Zhu Tao, Song Linbo, Gai Yu, Liao Ruijin
College of Materials Science and Engineering, Chongqing University, Chongqing400044, China.
State Key Laboratory of Power Transmission Equipment & System Security and New Technology, Chongqing University, Chongqing400044, China.
ACS Appl Mater Interfaces. 2023 Jan 18;15(2):3599-3612. doi: 10.1021/acsami.2c17881. Epub 2022 Dec 29.
Slippery liquid-infused porous surfaces (SLIPSs) are widely used as an effective passive approach to reduce icing disasters. However, various porous structures make SLIPSs exhibit different droplet mobility and lubricant stability. Undoubtedly, the substrate surface has a great impact on the durable anti-icing of SLIPSs. Herein, surfaces with different pore sizes and porosities were prepared to study their effects on the performance of SLIPS. The results show that small pores and high porosity are beneficial for the preparation of durable anti-icing SLIPS. The small pore size (about 100 nm) has a strong capillary pressure on the lubricant, and the surface with high porosity (66%) possesses a large lubricant-liquid contact ratio. These two can greatly improve the lubricant stability of SLIPS and achieve rapid self-healing. The SLIPS prepared by a suitable porous surface shows excellent anti-icing performance in the simulated glaze ice and durable anti-icing ability in the long-term icing/deicing cycles. In detail, the prepared SLIPS experiences more than 140 icing/deicing cycles through four effective self-healing while maintaining extremely low ice adhesion (<20 kPa). This work proposes a certain improved SLIPS with small pores and high porosity to achieve excellent durable anti-icing performance, broadening the practical applications of SLIPS.
注入滑液的多孔表面(SLIPSs)作为一种减少结冰灾害的有效被动方法被广泛应用。然而,各种多孔结构使SLIPSs表现出不同的液滴流动性和润滑剂稳定性。毫无疑问,基底表面对SLIPSs的持久防冰性能有很大影响。在此,制备了具有不同孔径和孔隙率的表面,以研究它们对SLIPS性能的影响。结果表明,小孔径和高孔隙率有利于制备持久防冰的SLIPS。小尺寸孔径(约100纳米)对润滑剂具有很强的毛细压力,高孔隙率(66%)的表面具有较大的润滑剂 - 液体接触比。这两者可以极大地提高SLIPS的润滑剂稳定性并实现快速自愈。由合适的多孔表面制备的SLIPS在模拟 glaze 冰中表现出优异的防冰性能,并且在长期结冰/除冰循环中具有持久的防冰能力。具体而言,制备的SLIPS通过四次有效的自愈经历了超过140次结冰/除冰循环,同时保持极低的冰附着力(<20 kPa)。这项工作提出了一种具有小孔径和高孔隙率的改进型SLIPS,以实现优异的持久防冰性能,拓宽了SLIPS的实际应用范围。