We report experimental and theoretical evidence of the different mechanisms that lead to doping of Si nanowires upon molecular adsorption of two paradigmatic Lewis bases. Pyridine genuinely dopes the nanowires by injecting charge carriers. Ethanol, on the other hand, simply modifies the dielectric screening conditions, allowing the reactivation of preexisting electrically passive impurities, and thus cannot control neither the nature (n- vs p-type) nor the concentration of the carriers.

Molecular doping and gas sensing in Si nanowires: From charge injection to reduced dielectric mismatch

CULTRERA, ALESSANDRO;LAMBERTI, Carlo;BORDIGA, Silvia;
2013-01-01

Abstract

We report experimental and theoretical evidence of the different mechanisms that lead to doping of Si nanowires upon molecular adsorption of two paradigmatic Lewis bases. Pyridine genuinely dopes the nanowires by injecting charge carriers. Ethanol, on the other hand, simply modifies the dielectric screening conditions, allowing the reactivation of preexisting electrically passive impurities, and thus cannot control neither the nature (n- vs p-type) nor the concentration of the carriers.
2013
114
20
204302-1
204302-5
http://scitation.aip.org/content/aip/journal/jap/114/20/10.1063/1.4834576
Si nanowires; porous silicon; pyridine adsorption; ethylene adsorption; FTIR; DFT
Giampiero Amato;Alessandro Cultrera;Luca Boarino;Carlo Lamberti;Silvia Bordiga;Francesco Mercuri;Xavier Cartoixà;Riccardo Rurali...espandi
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2318/141320
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