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February 8, 2013Journal of Micromechanics and Microengineering25 citations

The effects of DRIE operational parameters on vertically aligned micropillar arrays

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KMKane MillerMLMingxiao LiKWKevin Walsh

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Abstract

Vertically aligned silicon micropillar arrays have been created by deep reactive ion etching (DRIE) and used for a number of microfabricated devices including microfluidic devices, micropreconcentrators and photovoltaic cells. This paper delineates an experimental design performed on the Bosch process of DRIE of micropillar arrays. The arrays are fabricated with direct-write optical lithography without photomask, and the effects of DRIE process parameters, including etch cycle time, passivation cycle time, platen power and coil power on profile angle, scallop depth and scallop peak-to-peak distance are studied by statistical design of experiments. Scanning electron microscope images are used for measuring the resultant profile angles and characterizing the scalloping effect on the pillar sidewalls. The experimental results indicate the effects of the determining factors, etch cycle time, passivation cycle time and platen power, on the micropillar profile angles and scallop depths. An optimized DRIE process recipe for creating nearly 90° and smooth surface (invisible scalloping) has been obtained as a result of the statistical design of experiments.

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Cite This Study

Miller et al. (2013) studied this question.

synapsesocial.com/papers/6a69ede057d7d08ca7e85507https://doi.org/10.1088/0960-1317/23/3/035039
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