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Indium Phosphide MEMS Cantilever Resonator Sensors Utilizing a Pentacene Absorption Layer
Abstract: We report a microelectromechanical system cantilever waveguide resonator sensing platform utilizing a novel optical readout scheme and the organic semiconductor pentacene as a surface absorbing layer. In this paper, the measurement of isopropyl alcohol and ethanol vapors by way of mass induced frequency shift using a cantilever microbalance is demonstrated. Vapor was introduced to the system through a custom built environmental chamber. A frequency shift due to a mass absorption of 65 Hz was measured, corresponding to a measurement of $6.92 pm 1.1 times 10^{-14} hbox{g}$ with a minimum detectable mass of $5.09 times 10^{-15} hbox{g}$ for the devices presented. The pentacene absorbing layer in this paper shows it for the first time, functioning as a mass absorbing layer. These results are also the first demonstration of repeatable mass sensing performed using the integrated indium phosphide cantilever waveguide sensor platform.$hfill$ 2008-0134]
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