Zhejiang Provincial Key Laboratory of Advanced Chemical Engineering Manufacture Technology, College of Chemical and Biological Engineering , Zhejiang University , Hangzhou 310027 , P. R. China.
ACS Appl Mater Interfaces. 2019 Apr 3;11(13):12838-12845. doi: 10.1021/acsami.8b20352. Epub 2019 Mar 22.
Various organogel materials with either a liquid or solid surface layer have recently been designed and prepared. In this work, amphiphilic organogels (AmOG) are innovatively developed from copolymer P(PDMS-r-PEG-r-GMA) and 2,2'-diaminodiphenyldisulfide via epoxy group addition reaction and then infiltrated with amphiphilic lubricants instead of traditional hydrophilic or hydrophobic lubricants. Because of synergistic effects of hydrophilic and hydrophobic segments of amphiphilic lubricants, the AmOG surfaces showed high stability and excellent anti-icing performance. The delay in the freezing point of water was 1000 s on AmOG surfaces, which is 40 times longer as compared to the untreated hydrophilic glass surface. More importantly, low ice adhesion strength (15.1 kPa) was observed on AmOG which remained about 40 kPa even after 20 icing-deicing cycles. The novel amphiphilic organogels provide a new idea to prepare long-term anti-icing materials for practical applications.
最近设计并制备了各种具有液体或固体表面层的有机凝胶材料。在这项工作中,通过环氧基团加成反应,从嵌段共聚物 P(PDMS-r-PEG-r-GMA)和 2,2'-二氨基二苯二硫化物创新性地开发了两亲性有机凝胶(AmOG),然后用两亲性润滑剂代替传统的亲水性或疏水性润滑剂进行渗透。由于两亲性润滑剂的亲水和疏水段的协同作用,AmOG 表面表现出高稳定性和优异的抗结冰性能。水的冰点延迟在 AmOG 表面达到 1000 秒,比未经处理的亲水玻璃表面长 40 倍。更重要的是,在 AmOG 上观察到的冰附着强度低(15.1 kPa),即使经过 20 次结冰除冰循环,仍保持在约 40 kPa。这种新型两亲性有机凝胶为实际应用中制备长效抗冰材料提供了新的思路。