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CAS: 1325210-16-9
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Jeffrey S. Moore

The University of Illinois at Urbana-Champaign
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Ling Zang

University of Utah
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Co-reporter: Helin Huang, Dustin E. Gross, Xiaomei Yang, Jeffrey S. Moore, and Ling Zang
pp: 7704
Publication Date(Web):August 8, 2013
DOI: 10.1021/am402420g
High dark electrical conductivity was obtained for a p-type organic nanofibril material simply through a one-step surface doping. The nanofibril composite thus fabricated has been proven robust under ambient conditions. The high conductivity, combined with the intrinsic large surface area of the nanofibers, enables development of chemiresistor sensors for trace vapor detection of amines, with detection limit down to sub-parts per billion range.Keywords: high conductivity; organic nanofiber; p-type materials; sensors; surface doping; vapor detection;