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Natural insect and plant micro-/nanostructsured surfaces: An excellent selection of valuable templates with superhydrophobic and self-cleaning properties

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posted on 2024-07-09, 14:35 authored by Song Nguyen, Hayden WebbHayden Webb, Peter MahonPeter Mahon, Russell Crawford, Elena Ivanova
Insects and plants are two types of organisms that are widely separated on the evolutionary tree; for example, plants are mostly phototrophic organisms whilst insects are heterotrophic organisms. In order to cope with environmental stresses, their surfaces have developed cuticular layers that consist of highly sophisticated structures. These structures serve a number of purposes, and impart useful properties to these surfaces. These two groups of organisms are the only ones identified thus far that possess truly superhydrophobic and self-cleaning properties. These properties result from their micro- and nano-scale structures, comprised of three-dimensional wax formations. This review analyzes the surface topologies and surface chemistry of insects and plants in order to identify the features common to both organisms, with particular reference to their superhydrophobic and self-cleaning properties. This information will be valuable when determining the potential application of these surfaces in the design and manufacture of superhydrophobic and self-cleaning devices, including those that can be used in the manufacture of biomedical implants.

Funding

Australian Research Council

Multi-scale imaging and characterisation facility for biological structure and function : Australian Research Council (ARC) | LE130100114

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ISSN

1420-3049

Journal title

Molecules

Volume

19

Issue

9

Pagination

13614-13630

Publisher

MDPIAG

Copyright statement

Copyright © 2014 by The authors; licensee MDPI, Basel, Switzerland. This article has been is reproducedunder the terms and conditions of the Creative Commons Attribution license (http://creativecommons.org/licenses/by/3.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.

Language

eng

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