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A dynamic nanoindentation technique to investigate the nanomechanical properties of a colored beetle

机译:一种探讨彩色甲虫纳米力学性质的动态纳米凸缘技术

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摘要

Special internal structures of the cuticle of a beetle have multifunctionality including self-protection and attraction of mates using structural coloration, and being lightweight with high strength, which can protect the body and membranous hindwings. Special optical properties were found in the black spots region (BSR) of the cuticle of the multicolored Asian lady beetle (Harmonia axyridis). Both the BSR and the orange region (OR) have alternating layers of chitin and melanoprotein, as detected using field emission scanning electron microscopy (FESEM). However, a parallel wavy line structure was found in the BSR via laser scanning confocal microscopy (LSCM). This special structural color may arise via a diffraction grating mechanism. To explore the relationship between the material and its optical properties, the dynamic nanoindentation approach (nano-DMA) was used. The viscoelastic properties of the cuticle were assessed including the storage modulus (E'), loss modulus (E '') and loss tangent (tan delta), in the differently colored zones. The extent of protein cross-linking affects the cuticle's mechanical properties. We then demonstrated the applicability of a power-law frequency dependence analysis of E ' and tan delta. Furthermore, the frequency exponent of n and tan d were discussed in relation to the BSR and OR. A lower wavelength of maximum reflectance was found in the BSR that had little frequency dependence on n and a larger tan delta value related to its extent of protein cross-linking. This is contrary to the results obtained in the OR. The results will help in designing lightweight, high strength, and color-changing micro air vehicles (MAVs).
机译:甲壳虫角质层的特殊内部结构具有多功能性,包括使用结构着色的自我保护和吸引配合,并且具有高强度的重量轻,这可以保护身体和膜质的挤压件。在多彩多姿的亚洲女士甲虫(Harmunia Axyridis)的角质层的黑点区域(BSR)中发现了特殊的光学性质。如使用现场发射扫描电子显微镜(FESEM)检测,BSR和橙色区域(或)都具有甲壳素和母菜蛋白的交替层。然而,通过激光扫描共聚焦显微镜(LSCM)在BSR中发现了平行的波状线结构。这种特殊的结构颜色可能通过衍射光栅机构出现。为了探讨材料与光学性质之间的关系,使用动态纳米凸缘方法(纳米DMA)。评估角质层的粘弹性特性,包括储存模量(e'),损耗模量(e'')和不同颜色的区域中的损耗正切(Tan delta)。蛋白质交联的程度影响了角质层的机械性能。然后,我们展示了E'和Tan Delta的权力法频率依赖性分析的适用性。此外,关于BSR和或者,讨论了N和TAN D的频率指数。在BSR中发现了较低波长的最大反射率,其频率依赖性几乎没有与其与其蛋白质交联的程度相关的较大的Tanδ值。这与在中获得的结果相反。结果将有助于设计轻量级,高强度和变色的微型空气车(MAV)。

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  • 来源
    《RSC Advances》 |2016年第82期|共8页
  • 作者单位

    Jilin Univ Key Lab Bion Engn Minist Educ Changchun 130025 Peoples R China;

    Jilin Univ Key Lab Bion Engn Minist Educ Changchun 130025 Peoples R China;

    Jilin Univ State Key Lab Automot Dynam Simulat Changchun 130022 Peoples R China;

    Ohio State Univ Nanoprobe Lab Bio &

    Nanotechnol &

    Biomimet NLB2 201 W 19th Ave Columbus OH 43210 USA;

    Jilin Univ Key Lab Bion Engn Minist Educ Changchun 130025 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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