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Line inhomogeneous

If dye molecules are embedded into an amorphous matrix, preferably transparent polymers, greatly and inbornogenously broadened spectral lines are observed. This broadening is caused by the energetic interaction of the dye molecules with the locally different environment in the polymer matrix. The ratio of the homogenous initial line width of the dye molecule T to the inhomogenous line width of the dye in the polymer T ranges from 1 10 to 1 10 . ... [Pg.155]

The main application of double resonance is the resolution of hyperfine and particularly superhyperfine interactions that are not extractable from regular EPR spectra because they are lost in the inhomogeneous line. The biological relevance is in otherwise unavailable detailed information on the electronic structure and the coordination of active sites and their interaction with reactants, such as enzyme substrates. To be well prepared, check off the items in the following list. [Pg.227]

A. Meissner, P. Bloch, E. Humpfer, M. Spraul and O. W. Sorensen, Reduction of inhomogeneous line broadening in two-dimensional high-resolution MAS NMR spectra of molecules attached to swelled resins in solid-phase synthesis, J. Am. Chem. Soc., 1997, 119, 1787-1788. [Pg.289]

As introduced in Section 3.1, Forster theory assumes that there is no inhomogeneous line broadening, i.e. static disorder, in the spectra of donor emission and acceptor absorption. However, if one considers an ensemble of inhomoge-neously broadened spectra, the spectral overlap is given by ... [Pg.28]

The S groups stabilized at the solid surface can differ in their chemical nature. In the disordered (amorphous) solids, to which silica refers and which are of most practical and theoretical interest, the variations in the spatial structure are inevitable. These variations cause variations in the properties of even those S groups having chemically identical composition of their coordination spheres and give rise to the inhomogeneous line broadening in the spectra of these groups and to their kinetic inequivalence. In this work, special emphasis is placed on the questions associated with these problems. [Pg.233]

Isotropic scattering In addition to the dephasing time T2, the correlation time rc of the purely vibrational relaxation process can be measured, providing quantitative information on the question of homogeneous/inhomogeneous line broadening. [Pg.27]

An example is illustrated in Fig. 2. In case 1, there are two mechanisms operating one in the fast modulation limit, and one in the slow modulation limit. This is the classic case of combined homogeneous and inhomogeneous line broadening. In case 2, there is a single mechanism, but it is in the intermediate modulation region. The Raman hnewidths are identical... [Pg.403]


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See also in sourсe #XX -- [ Pg.218 , Pg.219 , Pg.220 , Pg.221 , Pg.222 , Pg.223 , Pg.224 , Pg.225 ]




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Asymmetric inhomogeneous line

Homogeneous and inhomogeneous lines

Homogeneous versus inhomogeneous lines

Inhomogeneity

Inhomogeneous absorption lines

Inhomogeneous line broadening

Inhomogeneous line profiles

Inhomogeneously broadened line

Inhomogenities

Line broadening mechanisms inhomogeneous

Line broadening, inhomogeneous temperature-independent

Line shape function inhomogeneous

Line width inhomogeneous

Saturation of Inhomogeneous Line Profiles

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