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Suppressed Hysteretic Field Emission From Polymer Encapsulated Silver Nanowires

Suppression of the hysteretic electron emission in one-dimensional nanomaterial-based electron sources remains a critical barrier preventing their wide scale adoption in various vacuum electronics applications. Here, we report on the suppressed hysteretic performance, and its photo-dependence from c...

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Published in:IEEE transactions on nanotechnology 2017-01, Vol.16 (1), p.11-15
Main Authors: Cole, Matthew T., Coskun, Sahin, Parmee, Richard J., Hiralal, Pritesh, Cepek, Cinzia, Robertson, Alexander W., Chi Li, Qing Dai, Warner, Jamie H., Milne, William I., Unalan, Husnu E.
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container_title IEEE transactions on nanotechnology
container_volume 16
creator Cole, Matthew T.
Coskun, Sahin
Parmee, Richard J.
Hiralal, Pritesh
Cepek, Cinzia
Robertson, Alexander W.
Chi Li
Qing Dai
Warner, Jamie H.
Milne, William I.
Unalan, Husnu E.
description Suppression of the hysteretic electron emission in one-dimensional nanomaterial-based electron sources remains a critical barrier preventing their wide scale adoption in various vacuum electronics applications. Here, we report on the suppressed hysteretic performance, and its photo-dependence from conformal poly-vinylpyrrolidone encapsulated percolative Ag nanowire-based electron sources.
doi_str_mv 10.1109/TNANO.2016.2623355
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source IEEE Electronic Library (IEL) Journals
subjects Adlayer
Annealing
Coatings
Current measurement
Electron emission
Electron sources
field electron emission
Hysteresis
Nanomaterials
poly-vinylpyrrolidone
silver nanowires
Surface treatment
title Suppressed Hysteretic Field Emission From Polymer Encapsulated Silver Nanowires
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