DocumentCode :
269815
Title :
Design and fabrication of hollow out-of-plane silicon microneedles
Author :
Jurčíček, Petr ; Zou, Hailin ; Shuiping Zhang ; Chong Liu
Author_Institution :
Res. Center for Micro Syst. Technol. (MST), Dalian Univ. of Technol., Dalian, China
Volume :
8
Issue :
2
fYear :
2013
fDate :
Feb-13
Firstpage :
78
Lastpage :
81
Abstract :
The design and fabrication of hollow out-of-plane silicon microneedles that mimic the function and dimensions of a mosquito´s mouthparts are proposed. Two-step etching and deep reactive ion etching from both sides of the wafer were used to etch the boreholes completely and to ensure the holes have lateral smoothness. Microneedles composed of {411} exterior crystal planes were formed by anisotropic etching in 40% KOH solution at a water-bath temperature of 87°C. Finally, hollow silicon microneedles with a shank height of 100-120 μm and needle borehole diameter of 10-25 μm were fabricated. Flow rate tests using hollow microneedles were performed and demonstrated that the correlation between the flow rate and the inner diameter follows the Hagen-Poiseuille law. Sample tests were performed using pig skin and have shown that the microneedles have sufficient strength to withstand breakup. The microneedles, that the authors fabricated by using the microelectromechanical system, have potential applications in painless transdermal drug delivery systems.
Keywords :
Poiseuille flow; elemental semiconductors; microfluidics; pipe flow; semiconductor growth; silicon; sputter etching; Hagen-Poiseuille law; Si; anisotropic etching; deep reactive ion etching; flow rate tests; hollow out-of-plane silicon microneedle design; hollow out-of-plane silicon microneedle fabrication; inner diameter; lateral smoothness; microelectromechanical system; mosquito mouthpart dimensions; mosquito mouthpart function; needle borehole diameter; painless transdermal drug delivery systems; pig skin; shank height; size 10 mum to 25 mum; size 100 mum to 120 mum; temperature 87 degC; two-step etching; water-bath temperature; {411} exterior crystal planes;
fLanguage :
English
Journal_Title :
Micro & Nano Letters, IET
Publisher :
iet
ISSN :
1750-0443
Type :
jour
DOI :
10.1049/mnl.2012.0903
Filename :
6545160
Link To Document :
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