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Nanostructured silicon flapping wing with higher strength and low reflectivity for solar powered MEMS aircraft
Conference paper

Nanostructured silicon flapping wing with higher strength and low reflectivity for solar powered MEMS aircraft

Kunal Kashyap, Amarendra Kumar, Chi-Nan Chen, Max T. Hou and J. Andrew Yeh
Proceedings of the IEEE International Conference on Micro Electro Mechanical Systems (MEMS), pp.648-651
2014

Abstract

Electronic Optical and Magnetic Materials Condensed Matter Physics Mechanical Engineering Electrical and Electronic Engineering
This work presents silicon flapping wings design with higher bending strength and low reflectivity for MEMS aircraft. The design was bio-inspired by the cicada wings which are having numerous nanostructures upon it. The nanostructure on silicon increases the bending strength by ∼6 times. The higher strength silicon samples can successfully demonstrate the 100 μm thick bendable silicon by nanostructure surface texturing used for flapping wings. Moreover, same nanostructures act as antireflective layer due to improved light trapping for solar cell. The reflectivity of the nanotextured surface reduces to ∼2%. © 2014 IEEE.

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