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首页> 外文期刊>Journal of Applied Polymer Science >Facile preparation and strong adhesive strength of honeycomb polyurethane films with small pore diameter
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Facile preparation and strong adhesive strength of honeycomb polyurethane films with small pore diameter

机译:小孔直径的蜂窝聚氨酯膜的容易制剂和强粘合强度

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摘要

With the continuous development of bionics, such as, geckos and virginia creeper with both superhydrophobic and super-adhesive, the surface wetting and super-adhesive properties of various porous materials have attracted extensive attention of the scientific and medical communities. Here, the honeycomb polyurethane (PU) porous films with strong adhesion were successfully prepared by microphase separation method and the effects of growth parameters on their microstructure and adhesive strength to ice were investigated. It was found that a high relative humidity (e.g., 100%) and a low solution concentration (e.g., 2%) facilitated the formation of ordered honeycomb PU porous films, and as-prepared PU pores with average pore diameter as small as 5 mu m are better ordered and more uniform than these in related documents. Although the contact angle of water droplets on the surface of PU porous films increased from the premodification value of 85-130 degrees to more than 160 degrees after surface modification with polydopamine (PDA), the corresponding rolling angle remained approximately constant (180 degrees), indicating that the surface of PU porous films has strong adhesion similar to geckos and virginia creeper. Furthermore, at lower temperature, the PU porous films exhibited the high adhesive strength of 142.13 kPa on ice, which was strongly dependent on the porous microstructures and surface compositions. The improved adhesive behavior to ice of honeycomb PU porous films modified with PDA provides new strategies for surface modification of materials and potential applications in medical domain.
机译:随着仿生学的不断发展,如壁虎、弗吉尼亚爬虫等兼具超疏水性和超粘性的材料,各种多孔材料的表面润湿性和超粘性引起了科学界和医学界的广泛关注。采用微相分离法成功制备了具有强粘附力的蜂窝聚氨酯(PU)多孔膜,并研究了生长参数对其微观结构和与冰粘附强度的影响。研究发现,较高的相对湿度(例如100%)和较低的溶液浓度(例如2%)有助于形成有序的蜂窝状PU多孔膜,与相关文献相比,平均孔径小至5μm的已制备PU孔更有序、更均匀。尽管在用聚多巴胺(PDA)进行表面改性后,PU多孔膜表面上水滴的接触角从预改性值85-130度增加到160度以上,但相应的滚动角保持大致恒定(180度),表明聚氨酯多孔膜的表面具有很强的附着力,类似于壁虎和弗吉尼亚匍匐植物。此外,在较低温度下,聚氨酯多孔膜在冰上的粘附强度高达142.13kPa,这在很大程度上取决于多孔微结构和表面组成。PDA改性蜂窝状聚氨酯多孔膜对冰的粘附性能的改善为材料的表面改性和在医学领域的潜在应用提供了新的策略。

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