Li Yan, Zhang Junping, Wang Aiqin
Research Center of Resource Chemistry and Energy Materials, Key Laboratory of Clay Minerals of Gansu, Lanzhou Institute of Chemical Physics, Chinese Academy of Sciences, Lanzhou 730000, P.R. China.
Center of Materials Science and Optoelectronics Engineering, University of Chinese Academy of Sciences, Beijing 100049, P.R. China.
Langmuir. 2024 Oct 22;40(42):22446-22454. doi: 10.1021/acs.langmuir.4c03432. Epub 2024 Oct 10.
5G radomes are easily wetted and stained by rainfall, which greatly reduces the quality of signal transmission. Superhydrophobic coatings are expected to solve this problem because of their unique wettability, but it is still challenging to develop robust superhydrophobic coatings via simple methods. Here, we report the design of robust superhydrophobic coatings containing oxalic acid-modified attapulgite (MDP) for inhibiting rain attenuation of 5G radomes. First, a homogeneous suspension was prepared by nonsolvent-induced phase separation of a silicone-modified polyester adhesive (SMPA) solution containing fluorinated MDP (F-MDP) nanorods. Superhydrophobic coatings can be easily prepared by spraying the suspension. The effects of phase separation and the SMPA/F-MDP ratio on the surface morphology, superhydrophobicity, and stability of the coatings were systematically investigated. The micro-/nanostructure and low surface energy endow the coatings with excellent static and dynamic superhydrophobicity. Compared with previous studies, the coatings exhibit excellent mechanical stability, flexibility, chemical stability, and pressure resistance due to the combined effects of adhesion by SMPA, self-similar micro-/nanostructures, reinforcement by the MDP nanorods, etc. Consequently, the coatings show good performance in preventing rain attenuation of 5G radomes, an emerging application of Superhydrophobic coatings. We believe that the coatings have great application potential in various fields, including 5G communication.
5G天线罩很容易被雨水浸湿和沾染,这大大降低了信号传输质量。超疏水涂层因其独特的润湿性有望解决这一问题,但通过简单方法开发坚固的超疏水涂层仍然具有挑战性。在此,我们报道了一种用于抑制5G天线罩雨衰的含草酸改性凹凸棒石(MDP)的坚固超疏水涂层的设计。首先,通过含氟MDP(F-MDP)纳米棒的有机硅改性聚酯粘合剂(SMPA)溶液的非溶剂诱导相分离制备均匀悬浮液。通过喷涂该悬浮液可轻松制备超疏水涂层。系统研究了相分离和SMPA/F-MDP比例对涂层表面形貌、超疏水性和稳定性的影响。微/纳米结构和低表面能赋予涂层优异的静态和动态超疏水性。与先前的研究相比,由于SMPA的粘附、自相似微/纳米结构、MDP纳米棒的增强等综合作用,该涂层表现出优异的机械稳定性、柔韧性、化学稳定性和耐压性。因此,该涂层在防止5G天线罩雨衰方面表现出良好性能,这是超疏水涂层的一个新兴应用。我们相信该涂层在包括5G通信在内的各个领域都具有巨大的应用潜力。