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Isomer shift in Mossbauer spectroscopy

Two variables affecting the isomer shift in Mossbauer spectroscopy are the r character of the orbitals involved and the parted charge on the atom being studied Explain this phenomenon chantn rf/r i c.. in terms of how ihese two quantities. Ulect the electron density at the nucleus. [Pg.978]

The [Fe =0(TMP+ )]+ complex exhibited a characteristic bright green color and corresponding visible absorbance in its UV-vis spectrum. In its NMR spectrum, the meta-proton doublet of the porphyrin mesityl groups were shifted more than 70 ppm downfield from tetramethylsilane (TMS) because they were in the presence of the cation radical, while the methyl protons shift between 10 and 20ppm downfield. In Mossbauer spectroscopy, the isomer shift, 5 of 0.06 mm/s, and A q value of 1.62mm/s were similar to those for other known Fe(IV) complexes. Electron paramagnetic resonance (EPR), resonance Raman (RR), and EXAFS spectroscopies provided additional indications of an Fe =0 n-cation radical intermediate. For instance,... [Pg.376]

The isomer shift in 57Fe Mossbauer spectroscopy is given by [45]... [Pg.69]

In Mossbauer spectroscopy, isomer shift, which is one of the important parameters to discuss the hybridization between 5f eiectrons at uranium atoms and electrons at the other atoms, is difficult to observe as mentioned above. However, hyperfine coupling constant at nuclei is a complementary parameter to discuss the hybridization at the uranium site. Typical coupling constants in uranium-based intermetallics are about I50T//xb, to our best knowledge. When coupling constants smaller than 150 TZ/ b te obtained in some compounds, it can be concluded that the nature of the 5f electrons in them is more delocalized than that in typical uranium-based intermetallics because of the expansion of the wave functions of 5f electrons. [Pg.135]

Shenoy GK (1984) Mossbauer-effect isomer shift. In Long GJ (ed) Mossbauer Spectroscopy Applied to Inorganic Chemistry, Vol 1, pp 57-78. New York Plenum Press. [Pg.173]

A unique situation is encountered if Fe-M6ssbauer spectroscopy is applied for the study of spin-state transitions in iron complexes. The half-life of the excited state of the Fe nucleus involved in the Mossbauer experiment is tj/2 = 0.977 X 10 s which is related to the decay constant k by tj/2 = ln2/fe. The lifetime t = l//c is therefore = 1.410 x 10 s which value is just at the centre of the range estimated for the spin-state lifetime Tl = I/Zclh- Thus both the situations discussed above are expected to appear under suitable conditions in the Mossbauer spectra. The quantity of importance is here the nuclear Larmor precession frequency co . If the spin-state lifetime Tl = 1/feLH is long relative to the nuclear precession time l/co , i.e. Tl > l/o) , individual and sharp resonance lines for the two spin states are observed. On the other hand, if the spin-state lifetime is short and thus < l/o) , averaged spectra with intermediate values of quadrupole splitting A q and isomer shift 5 are found. For the intermediate case where Tl 1/cl , broadened and asymmetric resonance lines are obtained. These may be the subject of a lineshape analysis that will eventually produce values of rate constants for the dynamic spin-state inter-conversion process. The rate constants extracted from the spectra will be necessarily of the order of 10 -10 s"F... [Pg.108]

For a comparison of experimental Mossbauer isomer shifts, the values have to be referenced to a common standard. According to (4.23), the results of a measurement depend on the type of source material, for example, Co diffused into rhodium, palladium, platinum, or other metals. For Fe Mossbauer spectroscopy, the spectrometer is usually calibrated by using the known absorption spectrum of metallic iron (a-phase). Therefore, Fe isomer shifts are commonly reported relative to the centroid of the magnetically split spectrum of a-iron (Sect. 3.1.3). Conversion factors for sodium nitroprusside dihydrate, Na2[Fe(CN)5N0]-2H20, or sodium ferrocyanide, Na4[Fe(CN)]6, which have also been used as reference materials, are found in Table 3.1. Reference materials for other isotopes are given in Table 1.3 of [18] in Chap. 1. [Pg.81]


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See also in sourсe #XX -- [ Pg.341 ]

See also in sourсe #XX -- [ Pg.518 ]




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