the chemical deposition method for the decoration of palladium particles on carbon nanofibers with rapid conductivity changes

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ID: 159913
2016
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Ranked #14 of 133 articles by views in progress in neuro-psychopharmacology & biological psychiatry

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Abstract
Palladium (Pd) metal is well-known for hydrogen sensing material due to its high sensitivity and selectivity toward hydrogen, and is able to detect hydrogen at near room temperature. In this work, palladium-doped carbon nanofibers (Pd/CNFs) were successfully produced in a facile manner via electrospinning. Well-organized and uniformly distributed Pd was observed in microscopic images of the resultant nanofibers. Hydrogen causes an increment in the volume of Pd due to the ability of hydrogen atoms to occupy the octahedral interstitial positions within its face centered cubic lattice structure, resulting in the resistance transition of Pd/CNFs. The resistance variation was around 400%, and it responded rapidly within 1 min, even in 5% hydrogen atmosphere conditions at room temperature. This fibrous hybrid material platform will open a new and practical route and stimulate further researches on the development of hydrogen sensing materials with rapid response, even to low concentrations of hydrogen in an atmosphere.
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lee2016nanomaterialsthe Use this key to autocite in the manuscript while using SciMatic Manuscript Manager or Thesis Manager
Authors ;Hoik Lee;Duy-Nam Phan;Myungwoong Kim;Daewon Sohn;Seong-Geun Oh;Seong Hun Kim;Ick Soo Kim
Journal progress in neuro-psychopharmacology & biological psychiatry
Year 2016
DOI
10.3390/nano6120226
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