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Modulation excitation spectroscopy

The aim of this review is to provide an assessment of the state of this field. After a summary of some basic theoretical results, the focus is on experimental aspects, ranging from cell design to specialized techniques such as modulation excitation spectroscopy (MES). We emphasize the opportunities and limitations of ATR-IR spectroscopy in catalysis research. [Pg.228]

In the following, we describe such techniques, which are, besides time-resolved spectroscopy, modulation excitation spectroscopy (MES) (14,48,91) and singlebeam signal reference (SBSR) spectroscopy (14). [Pg.259]

The reaction Fe ccp/Fe cytc + Fe ccp/Fe cytc proceeds with AE s 0.4V. The reaction h j been moj ored both by pulse radiolysis, and by simple mixing of Fe ccp + Fe1 cytc, with equivalent results k 0.25 0.07 s (figure 10) It is interesting that a dependence of rate on the primary structure of the protein is observed (at constant AG) for horse cy1j.c/ccp(yeast) k = 0.25 s but for yeast. cytc/(yeast) ccp k = 4 s 1 and for tuna cytc/yeast ccp k s 0.1 s, even though the general three dimensional structures are essentially identical for horse, tuna and yeast cytochromes c. These determinations disprove an earlier suggestion based on modulated excitation spectroscopy, that k - 10 s. Clearly the rate is slow,... [Pg.159]

Ferri D, Kumar MS, Wirz R, et al. First steps in combining modulation excitation spectroscopy with synchronous dispersive EXAFS/DRIFTS/mass spectrometry for in situ time resolved study of heterogeneous catalysts. Phys Chem Chem Phys. 2010 12 5634. [Pg.327]

Modulation Excitation Spectroscopy with Phase-Sensitive Detection for Surface Analysis... [Pg.121]


See other pages where Modulation excitation spectroscopy is mentioned: [Pg.25]    [Pg.227]    [Pg.259]    [Pg.227]    [Pg.259]    [Pg.104]    [Pg.121]   
See also in sourсe #XX -- [ Pg.259 , Pg.260 , Pg.261 , Pg.262 ]

See also in sourсe #XX -- [ Pg.259 , Pg.260 , Pg.261 , Pg.262 ]




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