4.4 Article

Development of diamond-like carbon-coated electrodes for corrosion sensor applications at high temperatures

Journal

THIN SOLID FILMS
Volume 517, Issue 3, Pages 1120-1124

Publisher

ELSEVIER SCIENCE SA
DOI: 10.1016/j.tsf.2008.08.167

Keywords

Coupled multielectrode array sensor; Localized corrosion; Diamond-like carbon; Plasma immersion ion processing

Funding

  1. Southwest Research Institute Internal Research and Development [20.R9727]

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Coupled multielectrode array sensors have been used as online and real-time monitors for localized corrosion in both laboratory and field systems. Multiple miniature electrodes made of materials identical to the engineering component of interest are used as sensing electrodes. However, these devices have an upper operating temperature limit of approximately 70 degrees C because crevice formation between the electrode and the mounting material impairs their performance. In this paper, a crevice-free electrochemical sensor for corrosion monitoring at temperatures above 100 degrees C is presented. A diamond-like carbon thin film was deposited on the sensing electrodes using plasma immersion ion processing and its properties were characterized by scanning electron microscopy (SEM), transmission electron microscopy (TEM) and laser Raman spectroscopy. The effectiveness of the diamond-like carbon film in protecting the Alloy 22 (Ni-22Cr-13Mo-3Fe-3W) electrodes in a corrosive NaCl-NaNO(3)-KNO(3) salt mixture at 150 degrees C was demonstrated. The effective corrosion monitoring capability of the new electrochemical sensor at high temperatures was attributed to the pinhole-free microstructure, high electrical impedance, and high corrosion-resistance properties of the diamond-like carbon film. (C) 2008 Elsevier B.V. All rights reserved.

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