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High aspect ratio gold nanopillars on microelectrodes for neural interfaces
Authors:C Nick  S Quednau  R Sarwar  H F Schlaak  C Thielemann
Affiliation:1. BioMEMS Laboratory, Hochschule Aschaffenburg, Aschaffenburg, Germany
2. Microtechnology and Electromechanical Systems Laboratory (M+EMS), Institute of Electromechanical Design, Technische Universitaet Darmstadt, Darmstadt, Germany
Abstract:Microelectrode arrays (MEA) have become an established tool in applied and fundamental research. Low impedance at the interface between tissue and conducting electrodes is of utmost importance for the electrical recording or stimulation of electrophysiological active cells such as cardiac myocytes and neurons. A common way to improve this interface is to increase the electrochemically active surface area of the electrode. In this paper the fabrication of microelectrodes covered with very high aspect ratio (AR > 100) gold nanopillars is presented and electrode biocompatibility is investigated using cell culture experiments. The nanopillar electrodes show decreased impedance over the entire scanned frequency range of 1 Hz–100 kHz and an impedance improvement of up to 89.5 at 1 kHz depending on nanopillar height. Neurons adhere well to the substrate and electrodes and signals with amplitudes up to ten times higher than with conventional gold electrodes were recorded in cell culture experiments.
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