Zhou Maolin, Zhang Tiance, Wei Huijie, Zhu Lingmei, Gao Chang, Luo Qiang, Hou Yongping, Zheng Yongmei
Key Laboratory of Bio-Inspired Smart Interfacial Science and Technology of Ministry of Education, School of Chemistry, Beihang University (BUAA), Beijing 100191, P. R. China.
ACS Appl Mater Interfaces. 2025 Jun 25;17(25):37300-37310. doi: 10.1021/acsami.5c07113. Epub 2025 Jun 11.
A bioinspired icephobic surface featuring mosquito-eye-like micronanostructures (IPMM) is designed through candle soot self-assembly on a microspine array surface. The IPMM exhibits remarkable superhydrophobicity in cold temperatures, with low adhesion forces of ∼25.4 μN at a low temperature of -5 °C and impressive liquid repellency. The IPMM with a surface temperature of -5 °C is capable of consecutively repelling impacting droplets at 7.6 °C 15 times. IPMM displays excellent photothermal efficiency, e.g., a rapid defrosting rate of ∼2.03 kg·m·h, and deicing performance, with a deicing rate of ∼13.32 kg·m·h, respectively. The outdoor tests of IPMM at -9.6 °C further confirm such an effective desnow and deice capabilities. The snow covering the IPMM completely melted within ∼522 s, and the incompletely covered ice on the IPMM was able to completely slide off in a very short period of time (∼54 s). The ice layer (8 mm thick) that fully covers the IPMM is completely removed within 1359 s under outdoor conditions despite potential interference from external cold winds. This study provides an insight into design of innovative surfaces or materials for deicing tasks, which can be extended into the realms, e.g., aircraft wings, cable, wind blade, etc.
通过在微刺阵列表面进行烛烟自组装,设计出一种具有类似蚊眼微纳结构的仿生憎冰表面(IPMM)。IPMM在低温下表现出显著的超疏水性,在-5°C的低温下具有约25.4μN的低粘附力和令人印象深刻的液体排斥性。表面温度为-5°C的IPMM能够在7.6°C下连续排斥冲击液滴15次。IPMM显示出优异的光热效率,例如约2.03 kg·m·h的快速除霜速率,以及分别约13.32 kg·m·h的除冰性能。IPMM在-9.6°C下的户外测试进一步证实了这种有效的除雪和除冰能力。覆盖在IPMM上的雪在约522 s内完全融化,IPMM上未完全覆盖的冰能够在很短的时间内(约54 s)完全滑落。尽管有外部冷风的潜在干扰,但在户外条件下,完全覆盖IPMM的冰层(8 mm厚)在1359 s内被完全清除。这项研究为除冰任务的创新表面或材料设计提供了见解,可扩展到例如飞机机翼、电缆、风力叶片等领域。