Beijing National Laboratory for Molecular Sciences, Laboratory of Polymer Physics and Chemistry, Institute of Chemistry, Chinese Academy of Sciences (ICCAS), Beijing 100190, China.
J Colloid Interface Sci. 2011 Jul 1;359(1):296-303. doi: 10.1016/j.jcis.2011.03.076. Epub 2011 Apr 13.
Multifunctional superhydrophobic polymethylsilsesquioxane (PMSQ) surfaces with excellent solvent resistance, thermal stability and enhanced sound absorption property were manufactured by electrospinning. The surfaces with various hierarchical morphologies and hydrophobicity were obtained by electrospinning at the different stages of sol-gel transition of PMSQ prepolymer solution. At the stage with a proper viscosity the superhydrophobic PMSQ surface with a contact angle as high as 151° and a sliding angle as low as 8° was prepared. Due to the excellent thermal stability and solvent resistance properties of the cured PMSQ, the resultant surfaces remain superhydrophobicity after thermal treatment at 300 °C and immersion into many solvents. Additionally, an enhanced acoustical performance and ultra water repellency were obtained simultaneously when the traditional acoustical sponge was decorated with the electrospun PMSQ superhydrophobic surface. The robust superhydrophobic PMSQ surfaces may promise practical applications in many fields.
通过静电纺丝制备了具有优异耐溶剂性、热稳定性和增强吸声性能的多功能超疏水聚甲基硅倍半氧烷(PMSQ)表面。通过在 PMSQ 预聚物溶液的不同溶胶-凝胶转变阶段进行静电纺丝,获得了具有各种分级形貌和疏水性的表面。在适当的粘度阶段,制备了具有高达 151°接触角和低至 8°滑动角的超疏水 PMSQ 表面。由于固化的 PMSQ 具有优异的热稳定性和耐溶剂性,因此在 300°C 热处理和浸入多种溶剂后,所得表面仍保持超疏水性。此外,当传统吸音海绵用静电纺丝的 PMSQ 超疏水表面装饰时,同时获得了增强的吸声性能和超拒水性。坚固的超疏水 PMSQ 表面可能在许多领域具有实际应用前景。