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首页> 外文期刊>International Journal of Refrigeration >Ice-phobic glass-substrate surfaces coated with polypeptides inspired by antifreeze protein
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Ice-phobic glass-substrate surfaces coated with polypeptides inspired by antifreeze protein

机译:涂层涂有抗冻蛋白的多肽的冰玻璃衬底表面

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摘要

The development of ice-phobic glass-substrate surfaces for industrial applications, such as preventing the formation of ice on vehicle windshields, is important. We have previously developed a glass surface coated with a polypeptide whose amino acid sequence is identical to part of an antifreeze protein. For this polypeptide, we showed that the ice adhesion strength was reduced by the coexistence of smooth surface parts exposing hydrophobic amino-acid residues and protrusion surface parts exposing hydrophilic amino-acid residues. In this report, we improve the experimental methods and conduct experiments on the freezing of water disks in steel washers on polypeptide-coated and uncoated surfaces. Under constant cooling surface temperatures, the ice adhesion strength of the coated surfaces decreased by up to 67% when compared with that of uncoated surfaces. Atomic force microscopy observations of the polypeptide-coated glass revealed small and large protrusions on the surface, which were formed by the aggregation of polypeptide. These protrusions and the smooth surface are primarily responsible for the reduced ice adhesion strength. In addition, repeated freezing of the water disks on the surfaces revealed that the coated surfaces could maintain their characteristics for up to 100 repetitions. In addition, the transparency of the glass plate was not changed by the coating. Thus, this polypeptide coating technique should be suitable for improving deicing properties of windshields, traffic lights, and surveillance cameras. (C) 2020 Elsevier Ltd and IIR. All rights reserved.
机译:用于工业应用的冰冰玻璃基板表面的开发,例如防止在车辆挡风玻璃上形成冰,是重要的。我们之前已经开发出一种涂有多肽的玻璃表面,其氨基酸序列与抗冻蛋白的一部分相同。对于这种多肽,我们表明,通过曝光疏水性氨基酸残基的光滑表面部分的共存和暴露亲水性氨基酸残基的突出表面部分的共存减小了冰粘附强度。在本报告中,我们改善了在多肽涂覆和未涂覆的表面上的钢垫圈中冷冻水盘的实验方法和进行实验。在恒定的冷却表面温度下,与未涂覆的表面相比,涂覆表面的粘附强度降低至67%。多肽涂覆玻璃的原子力显微镜观察揭示了表面上的小而大的突起,由多肽的聚集形成。这些突起和光滑的表面主要负责降低的冰粘合强度。另外,反复冻结表面上的水盘显示,涂覆的表面可以保持其特征至多100重复。另外,涂层没有改变玻璃板的透明度。因此,这种多肽涂层技术应该适用于改善挡风玻璃,交通灯和监视摄像机的除冰性能。 (c)2020 Elsevier Ltd和IIR。版权所有。

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