4.7 Article

Ionic liquid ion sources:: Characterization of externally wetted emitters

Journal

JOURNAL OF COLLOID AND INTERFACE SCIENCE
Volume 282, Issue 2, Pages 415-421

Publisher

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.jcis.2004.08.132

Keywords

ion source; ionic liquid; electrochemical window; double layer; electrospray; colloid thruster; micropropulsion; wetting; ion lithography

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The feasibility of electrostatically extracting and accelerating ions from room temperature ionic liquids in a high vacuum environment is investigated using externally wetted emitters similar to those manufactured for liquid metal ion sources. made out of tungsten wire and electrochemically treated to produce a sharp tip and to increase surface wettability. The ionic liquid EMI-BF4, is used as a prototypical example. The temperature dependence on emission current suggests that liquid flow over the metallic surface is limited by viscosity. Time of-flight spectrometry indicates that the beam is composed of EMI+ and (EMI-BF4)EMIdivided by ions in the positive polarity and BF4- and (EMI-BF4)BF4- ions in the negative polarity, and that these ions are emitted with energies very close to their applied potentials. Angular distribution measurements in positive and negative polarities show that ions travel near the propagation axis. diverging by not more than 18degrees front the centerline. Thanks to the extraordinary variety of ionic liquids it should be possible to generate a correspondingly large number of bipolar nonmetallic ion beams each with unique properties and applicability in fields as diverse as ion lithography. analytical equipment and apace propulsion. (C) 2004 Elsevier Inc. All rights reserved.

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