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首页> 外文期刊>Journal of synchrotron radiation >High-spatial-resolution mapping of superhydrophobic cicada wing surface chemistry using infrared microspectroscopy and infrared imaging at two synchrotron beamlines
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High-spatial-resolution mapping of superhydrophobic cicada wing surface chemistry using infrared microspectroscopy and infrared imaging at two synchrotron beamlines

机译:使用红外显微技术和两条同步加速器光束线的红外成像对超疏水蝉翼表面化学进行高空间分辨率制图

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摘要

The wings of some insects, such as cicadae, have been reported to possess a number of interesting and unusual qualities such as superhydrophobicity, anisotropic wetting and antibacterial properties. Here, the chemical composition of the wings of the Clanger cicada (Psaltoda claripennis) were characterized using infrared (IR) microspectroscopy. In addition, the data generated from two separate synchrotron IR facilities, the Australian Synchrotron Infrared Microspectroscopy beamline (AS-IRM) and the Synchrotron Radiation Center (SRC), University of Wisconsin-Madison, IRENI beamline, were analysed and compared. Characteristic peaks in the IR spectra of the wings were assigned primarily to aliphatic hydrocarbon and amide functionalities, which were considered to be an indication of the presence of waxy and proteinaceous components, respectively, in good agreement with the literature. Chemical distribution maps showed that, while the protein component was homogeneously distributed, a significant degree of heterogeneity was observed in the distribution of the waxy component, which may contribute to the self-cleaning and aerodynamic properties of the cicada wing. When comparing the data generated from the two beamlines, it was determined that the SRC IRENI beamline was capable of producing higher-spatial-resolution distribution images in a shorter time than was achievable at the AS-IRM beamline, but that spectral noise levels per pixel were considerably lower on the AS-IRM beamline, resulting in more favourable data where the detection of weak absorbances is required. The data generated by the two complementary synchrotron IR methods on the chemical composition of cicada wings will be immensely useful in understanding their unusual properties with a view to reproducing their characteristics in, for example, industry applications.
机译:据报道,某些昆虫的翅,例如蝉,具有许多有趣和不寻常的特性,例如超疏水性,各向异性润湿和抗菌特性。在这里,使用红外(IR)显微技术表征了蝉蝉(Psaltoda claripennis)机翼的化学成分。此外,分析和比较了由两个独立的同步加速器红外设施(澳大利亚同步辐射红外光谱线(AS-IRM)和同步辐射中心(SRC),威斯康星大学麦迪逊分校,IRENI光束)产生的数据。机翼的红外光谱中的特征峰主要归因于脂族烃和酰胺官能团,这被认为分别表明存在蜡质和蛋白质成分,与文献一致。化学分布图显示,尽管蛋白质组分均匀分布,但蜡质组分的分布中观察到了很大程度的异质性,这可能有助于蝉翼的自清洁和空气动力学特性。当比较从两条光束线生成的数据时,可以确定SRC IRENI光束线能够在比AS-IRM光束线更短的时间内产生更高空间分辨率的分布图像,但是每个像素的频谱噪声水平在AS-IRM光束线上的测量值要低得多,因此在需要检测弱吸光度的地方,可获得更有利的数据。通过两种互补的同步加速器IR方法生成的有关蝉翼化学成分的数据,对于了解它们的异常特性,以便在例如工业应用中再现其特性,将非常有用。

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