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蝶翅的减法结构修饰。

Subtractive Structural Modification of Morpho Butterfly Wings.

机构信息

State Key Laboratory of Metal Matrix Composites, Shanghai Jiao Tong University, Shanghai, 200240, P. R. China.

School of Materials Science and Engineering, Shanghai Jiao Tong University, Shanghai, 200240, P. R. China.

出版信息

Small. 2015 Nov 11;11(42):5705-11. doi: 10.1002/smll.201500502. Epub 2015 Sep 23.

Abstract

Different from studies of butterfly wings through additive modification, this work for the first time studies the property change of butterfly wings through subtractive modification using oxygen plasma etching. The controlled modification of butterfly wings through such subtractive process results in gradual change of the optical properties, and helps the further understanding of structural optimization through natural evolution. The brilliant color of Morpho butterfly wings is originated from the hierarchical nanostructure on the wing scales. Such nanoarchitecture has attracted a lot of research effort, including the study of its optical properties, its potential use in sensing and infrared imaging, and also the use of such structure as template for the fabrication of high-performance photocatalytic materials. The controlled subtractive processes provide a new path to modify such nanoarchitecture and its optical property. Distinct from previous studies on the optical property of the Morpho wing structure, this study provides additional experimental evidence for the origination of the optical property of the natural butterfly wing scales. The study also offers a facile approach to generate new 3D nanostructures using butterfly wings as the templates and may lead to simpler structure models for large-scale man-made structures than those offered by original butterfly wings.

摘要

与通过加法修饰来研究蝴蝶翅膀的研究不同,本工作首次通过氧等离子体刻蚀法,通过减法修饰来研究蝴蝶翅膀的性质变化。通过这种减法过程对蝴蝶翅膀进行的可控修饰导致光学性质逐渐变化,有助于进一步了解通过自然进化进行的结构优化。闪蝶翅膀的绚丽色彩源自于翅膀鳞片上的分层纳米结构。这种纳米结构引起了很多研究工作的关注,包括对其光学特性的研究、在传感和红外成像方面的潜在应用,以及将这种结构用作制造高性能光催化材料的模板。受控制的减法工艺为修饰这种纳米结构及其光学特性提供了新途径。与之前关于 Morpho 翅膀结构光学特性的研究不同,本研究为天然蝴蝶翅膀鳞片光学特性的起源提供了额外的实验证据。该研究还提供了一种使用蝴蝶翅膀作为模板生成新型 3D 纳米结构的简便方法,与原始蝴蝶翅膀提供的方法相比,这种方法可能为大规模人造结构提供更简单的结构模型。

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