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首页> 外文期刊>Applied bionics and biomechanics >Differences in Nanostructure and Hydrophobicity of Cicada (Cryptotympana atrata) Forewing Surface with the Distribution of Precipitation
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Differences in Nanostructure and Hydrophobicity of Cicada (Cryptotympana atrata) Forewing Surface with the Distribution of Precipitation

机译:蝉前翅表面的纳米结构和疏水性与降水分布的差异

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Although the cicada wing has a variety of functions and the nanostructure and surface properties of many species have been extensively investigated, there are no reports investigating diversity of nanostructures and wetting properties within a single species collected at locations with different rainfall conditions. In this study, the hydrophobicity and nanostructure dimensions of the forewing surface of Cryptotympana atrata were measured, based on specimens collected from 12 distributions with varying precipitation averages in China and Japan. The relationships among hydrophobicity, nanostructures, and precipitation were analyzed, and the adaption of hydrophobic nanostructures under different wet environments is discussed. The precipitation of locations in the years the samples of C. atrata were collected only has an effect on the diameter and spacing of wing surface nanostructure, and the multiple years of precipitation may have an influence on the basic diameter and spacing, as well as the height of protrusions. The rougher the wing surface, the stronger the hydrophobicity which was observed from samples taken where the rainfall conditions of the collection years are high. To our knowledge, this is one special example providing evidence of hydrophobic nanostructures found on a biological surface of a single species which shows adaption for specific wet environments.
机译:尽管蝉翼具有多种功能,并且已经对许多物种的纳米结构和表面特性进行了广泛研究,但尚无报道调查在降雨条件不同的地方采集的单个物种内纳米结构和润湿特性的多样性。在这项研究中,根据从中国和日本的12个分布不同的降水平均值收集的标本,测量了隐隐隐孢子虫前爪表面的疏水性和纳米结构尺寸。分析了疏水性,纳米结构和沉淀之间的关系,并讨论了疏水性纳米结构在不同潮湿环境下的适应性。羊角线虫样本采集年份中的位置降水仅影响机翼表面纳米结构的直径和间距,而多年的降水量则可能影响基本直径和间距以及机翼表面纳米结构的直径。突起的高度。机翼表面越粗糙,在采集年份的降雨条件较高的情况下从所采集的样品中观察到的疏水性越强。据我们所知,这是一个特殊的例子,提供了在单个物种的生物表面上发现的疏水性纳米结构的证据,该结构显示出对特定潮湿环境的适应性。

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