4.6 Article

In situ infrared (FTIR) study of the mechanism of the borohydride oxidation reaction

Journal

PHYSICAL CHEMISTRY CHEMICAL PHYSICS
Volume 12, Issue 37, Pages 11507-11516

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/c003652h

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Funding

  1. CLUSTER-Energy Region Rhone-Alpes
  2. CAPES-COFECUB [Ph 598/08]

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Early reports stated that Au was a catalyst of choice for the BOR because it would yield a near complete faradaic efficiency. However, it has recently been suggested that gold could yield to some extent the heterogeneous hydrolysis of BH4-,therefore lowering the electron count per BH4-, especially at low potential. Actually, the blur will exist regarding the BOR mechanism on Au as long as no physical proof regarding the reaction intermediates is not put forward. In that frame, in situ physical techniques like FTIR exhibit some interest to study the BOR. Consequently, in situ infrared reflectance spectroscopy measurements (SPAIRS technique) have been performed in 1 M NaOH/1 M NaBH4 on a gold electrode with the aim to detect the intermediate species. We monitored several bands in B-H ((nu) over bar similar to 1180,1080 and 972 cm(-1)) and B-O bond regions ((nu) over bar =1325 and similar to 1425cm(-1)), which appear sequentially as a function of the electrode polarization. These absorption bands are assigned to BH3, BH2 and BO2- species. At the light of the experimental results, possible initial elementary steps of the BOR on gold electrode have been proposed and discussed according to the relevant literature data.

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