Title of article :
Nitrate reduction at Pt(1 0 0) single crystals and preferentially oriented nanoparticles in neutral media
Author/Authors :
Marta C. Figueiredo، نويسنده , , José Solla-Gull?n، نويسنده , , Francisco J. Vidal-Iglesias، نويسنده , , V?ctor Climent، نويسنده , , Juan M. Feliu، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2013
Pages :
10
From page :
2
To page :
11
Abstract :
The electroreduction of nitrate on Pt(1 0 0) electrodes in phosphate buffer neutral solution, pH 7.2, is reported. The sensitivity of the reaction to the crystallographic order of the surface is studied through the controlled introduction of defects by using stepped surfaces with (1 0 0) terraces of different length separated by monoatomic steps, either with (1 1 1) or (1 1 0) symmetry. The results of this study show that nitrate reduction occurs mainly on the well defined (1 0 0) terraces in the potential region where H adsorption starts to decrease, allowing the nitrate anion to access the surface. Adsorbed NO has been detected as a stable intermediate in this media. An oxidation process observed at 0.8 V has been identified as leading to the formation of adsorbed NO and being responsible for a secondary reduction process observed in the subsequent negative scan. Using in situ FTIRS, ammonium was found to be the main product of nitrate reduction. This species can be oxidized at high potentials resulting in adsorbed NO and nitrate (probably with nitrite as intermediate).
Keywords :
Platinum surfaces , Nitrate reduction , NO stripping , Neutral media , Phosphate buffer , FTIRS , single crystals
Journal title :
CATALYSIS TODAY
Serial Year :
2013
Journal title :
CATALYSIS TODAY
Record number :
1239071
Link To Document :
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