The electrochemical oxidation of hydrogen at activated platinum electrodes in room temperature ionic liquids as solvents


Autoria(s): Silvester, D.S.; Ward, K.R.; Aldous, Leigh; Hardacre, Christopher; Compton, R.G.
Data(s)

01/07/2008

Resumo

The oxidation of hydrogen was studied at an activated platinum micro-electrode by cyclic voltammetry in the following ionic liquids: [C(2)mim][NTf2], [C(4)mim][NTf2], [N-6.2.2.2][NTf2], [P-14.6.6.6][NTf2], [C(4)mim][OTf], [C(4)mim][BF4] [C(4)mim][PF6], [C(4)mim][NO3], [C(6)mim]Cl and [C(6)mim][FAP] (where [C(n)mim](+) = 1-alkyl-3-methylimidazolium, [N-6,N-2,N-2,N-2](+) = n-hexyltriethylammonium, [P-14,P-6,P-6,P-6](+) = tris(n-hexyltetradecyl) phosphonium, [NTf2](-) = bis(trifluoromethylsulfonyl)amide, [OTf] = trifluoromethlysulfonate and [FAP](-) = tris(perfluoroethyl)trifluorophosphate). Activation of the Pt electrode was necessary to obtain reliable and reproducible voltammetry. After activation of the electrode, the H-2 oxidation waves were nearly electrochemically and chemically reversible in [C(n)mim][NTf2] ionic liquids, chemically irreversible in [C(6)mim]Cl and [C(4)mim][NO3], and showed intermediate characteristics in OTf-, [BF4](-), [PF6](-), [FAP](-) and other [NTf2](-)-based ionic liquids. These differences reflect the contrasting interactions of protons with the respective RTIL anions. The oxidation peaks are reported relative to the half-wave potential of the cobaltocenium/cobaltocene redox couple in all ionic liquids studied, giving an indication of the relative proton interactions of each ionic liquid. A preliminary temperature study (ca. 298-333 K) has also been carried out in some of the ionic liquids. Diffusion coefficients and solubilities of hydrogen at 298 K were obtained from potential-step chronoamperometry, and there was no relationship found between the diffusion coefficients and solvent viscosity. RTILs possessing [NTf2](-) and [FAP](-) anions showed the highest micro-electrode peak currents for the oxidation in H-2 saturated solutions, with[C(4)mim][NTf2] toeing the most sensitive. The large number of available RTIL anion/cation pairs allows scope for the possible electrochemical detection of hydrogen gas for use in gas sensor technology. (c) 2008 Elsevier B.V. All rights reserved.

Identificador

http://pure.qub.ac.uk/portal/en/publications/the-electrochemical-oxidation-of-hydrogen-at-activated-platinum-electrodes-in-room-temperature-ionic-liquids-as-solvents(2b9204b8-d9b6-4284-bee6-b566764d81f5).html

http://dx.doi.org/10.1016/j.jelechem.2008.02.018

http://www.scopus.com/inward/record.url?scp=44249105596&partnerID=8YFLogxK

Idioma(s)

eng

Direitos

info:eu-repo/semantics/restrictedAccess

Fonte

Silvester , D S , Ward , K R , Aldous , L , Hardacre , C & Compton , R G 2008 , ' The electrochemical oxidation of hydrogen at activated platinum electrodes in room temperature ionic liquids as solvents ' Journal of Electroanalytical Chemistry , vol 618 (1-2) , no. 1-2 , pp. 53-60 . DOI: 10.1016/j.jelechem.2008.02.018

Palavras-Chave #/dk/atira/pure/subjectarea/asjc/1500 #Chemical Engineering(all) #/dk/atira/pure/subjectarea/asjc/1600/1602 #Analytical Chemistry #/dk/atira/pure/subjectarea/asjc/1600/1603 #Electrochemistry
Tipo

article