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Voltage Spectroscopy

SPECTROSCOPIC TECHNIQUES COMBINED WITH STM 4.1. Current/Voltage Spectroscopy [Pg.17]


The information from electrochemical voltage spectroscopy (EVS) on thermodynamic parameters is in essence the same as that obtained by cyclic voltammetry. [Pg.28]

Figure 3. Slurry electrochemical voltage spectroscopy experiments with [Si(Pc)0](BF4)y n (y 0.00-0.50) materials in acetonitrile/(n-Bu)4N+BF4. Figure 3. Slurry electrochemical voltage spectroscopy experiments with [Si(Pc)0](BF4)y n (y 0.00-0.50) materials in acetonitrile/(n-Bu)4N+BF4.
Figure 10. Slurry electrochemical voltage spectroscopy experiments with tetragonal [Si(Pc)0]n and various perfluoroalkyl-sulfonates (as the tetrabutylammonium salts in acetonitrile). Figure 10. Slurry electrochemical voltage spectroscopy experiments with tetragonal [Si(Pc)0]n and various perfluoroalkyl-sulfonates (as the tetrabutylammonium salts in acetonitrile).
Figure 12. Micro-scale electrochemical voltage spectroscopy showing oxidative as well as reductive doping of tetragonal Si(Pc)0]n in THF/(n-Bu)4N+BF4. Figure 12. Micro-scale electrochemical voltage spectroscopy showing oxidative as well as reductive doping of tetragonal Si(Pc)0]n in THF/(n-Bu)4N+BF4.
Beebe JM, Frisbie CD, Kushmerick JG (2008) Measuring relative barrier heights in molecular electronic junctions with transition voltage spectroscopy. ACS Nano 2 827-832... [Pg.113]

Huisman EH, Guedon CM, van Wees BJ, van der Molen SJ (2009) Interpretation of transition voltage spectroscopy. Nano Lett 11 3909-3913... [Pg.113]

Apart from the more conventional transport measurements of molecular junctions at constant bias voltage, alkane(di)thiols-based molecular junctions were also characterized by transition voltage spectroscopy [258, 259], AC voltage modulation [260], and inelastic electron tunneling spectroscopies [261],... [Pg.146]

Schlichthorl G., Hnang S. Y., Sprague J. and Frank A. J. (1997), Band-edge movement and recombination kinetics in dye-sensitized nanocrystalhne TiOa solar cells a study by intensity-modulated photo voltage spectroscopy , J. Phys. Chem. B 101, 8141-8155. [Pg.735]

A comparison of this method with photoelectrochemical impedance spectroscopy" as applied to photoelectrochemical hydrogen evolution at p-lnP has been reported [728]. Intensity modulated photocurrent spectroscopy has been compared with intensity-modulated photo voltage spectroscopy (IMVS) [729]. Intensity modulated photocurrent spectroscopy has been applied in a study of the silicon dissolution in aqueous solutions of NH4F [730] and n-GaAs electrodes [731] a general review is available [732]. Photocorrosion of CdS has been investigated with IMPS and photoelectrochemical impedance spectroscopy (PEIS) [733] a mechanism could be de-... [Pg.167]

Silva, C.A.B., da Silva, S.J.S., Leal, J.F.P., Pinheiro, F.A., and Del Nero, J. (2011) Electronic transport in oligo- para-phenylene Junctions attached to carbon nanotube electrodes transition-voltage spectroscopy and chirality. Phys. Rev. B,... [Pg.375]

Arles JM, L6pez-Martuiez M, Giraudet A, Diez-Perez I, Sanz F, Gorostiza P (2012) Current-voltage characteristics and transition voltage spectroscopy of individual redox proteins. J Am Chem Soc 134 20218-20221... [Pg.1868]

The incremental capacity of an insertion electrode material used in ambient temperature batteries can be estimated from voltage spectroscopy measurements which can help to the determination of phase diagram of the insertion compotmd [1], In the first section, we examine the various aspects of electrochemical lithium insertion into a number of electrode materials. The experimental techniques of solid-state electrochemistry are presented in the second section. Voltage spectroscopy and phase diagram during Li intercalation into cathode materials are investigated. Finally, the experimental determination of the diffusion coefficient of ions in solid materials is investigated. [Pg.499]


See other pages where Voltage Spectroscopy is mentioned: [Pg.227]    [Pg.8]    [Pg.19]    [Pg.46]    [Pg.214]    [Pg.24]    [Pg.696]    [Pg.181]    [Pg.361]    [Pg.87]    [Pg.689]    [Pg.239]    [Pg.170]    [Pg.371]    [Pg.191]    [Pg.326]    [Pg.366]    [Pg.522]    [Pg.65]    [Pg.66]    [Pg.560]    [Pg.879]    [Pg.97]    [Pg.124]   


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