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Proceedings of the National Academy of Sciences of the United States of America|March 28, 1995
A chemically diverse conducting polymer-based "electronic nose"M S Freund, N S LewisAnalytical Chemistry|May 1, 1989
Ultramicroelectrode array behavior of one-dimensional organic conductor electrodesM S Freund, A Brajter-TothAnalytical Chemistry|September 29, 1999
Indirect electrochemical detection of type-B trichothecene mycotoxinsC C Hsueh, Y Liu, M S FreundAnalytical Chemistry|March 15, 1991
Effect of electrode substrate on the morphology and selectivity of overoxidized polypyrrole filmsA Witkowski, M S Freund, A Brajter-TothBioorganic & Medicinal Chemistry|May 20, 2000
The use of 'electronic nose' sensor responses to predict the inhibition activity of alcohols on the cytochrome P-450 catalyzed p-hydroxylation of anilineT P Vaid, N S LewisAnalytical Chemistry|April 6, 2001
Detection and classification characteristics of arrays of carbon black/organic polymer composite chemiresistive vapor detectors for the nerve agent simulants dimethylmethylphosphonate and diisopropylmethylphosponateA R Hopkins, N S LewisEnantiomer|September 26, 2001
Low power, lightweight vapor sensing using arrays of conducting polymer composite chemically-sensitive resistorsM A Ryan, N S LewisScience (New York, N.Y.)|February 27, 1981
Electrochemical reduction of horse heart ferricytochrome c at chemically derivatized electrodesN S Lewis, M S WrightonAnalytical Chemistry|June 7, 2011
Artificial neural network processing of stripping analysis responses for identifying and quantifying heavy metals in the presence of intermetallic compound formationH Chan, A Butler, D M Falck, et al.Proceedings of the National Academy of Sciences of the United States of America|May 20, 1998
Trends in odor intensity for human and electronic noses: relative roles of odorant vapor pressure vs. molecularly specific odorant bindingB J Doleman, E J Severin, N S LewisPageof 3