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Saturation molecular systems, extension

The oxidation of sulfides to sulfones has been the subject of extensive studies, since sulfones are useful synthons for the construction of various chemically and biologically significant moleculesJ Recently, a new catalytic system has been developed by exchanging potassium osmate onto chloride-saturated layered double hydroxides (Figure 9.1), which we have shown to be an efficient catalyst for the direct oxidation of sulfides to sulfones, using molecular oxygen as the stoichiometric oxidant and with delivery of two oxygen atoms simultaneously to the sulfide, reminiscent of olefin dihydroxylation reactions. [Pg.280]

Solutions of Group I metals in the lower molecular weight amines are more potent reductants than those in liquid ammonia, and as a general rule substrates are more extensively reduced than by the Birch method. o Naphthalene (49 Scheme 48), for example, is reduced by a solution of lithium in ethylamine to a 1 1 mixture of A W- and A -octalins (214) and (215). If ethylenediamine is employed as the medium, the completely saturated decahydronaphthalene is formed, while the proportion of (215) may be increased to 80% by utilizing a (1 1) mixture of ethylamine with dimethylamine. The formation of the more-substituted alkene appears to be a general result for such primary and secondary amine mixtures and has been used to good effect in the reduction of both toluene and cumene to their 3,4,5,6-tetrahydro derivatives (216) and (217), respectively, in ca. 80% yields. A comprehensive review of these kinds of reducing systems, which also draws comparisons with the Birch method, is available,but more recent-... [Pg.516]

We conclude that for short-intermediate chains, the principal factors that determine heat conduction are (a) the molecular vibrational spectrum, (b) the localization properties of the molecular modes, (c) the coupling of the system to the reservoirs, and (d) the cut-off frequency that characterizes the reservoirs spectral properties. For harmonic junctions, the heat conductance of long-enough chains at high temperatures essentially saturates or the thermal conductivity (JN/AT) diverges. Extensions of this formalism to nonlinear molecular junctions are of great interest [16,17],... [Pg.278]

Saturation transfer is a technique that is sensitive to very slow motions with correlation times from 10 to 10 s—a region where conventional ESR is not sensitive [89]. It has been used extensively in spin label studies of biological systems [90], [91]. Spectra are recorded under saturation conditions and high modulation amplitudes, as second harmonic in-phase and quadrature spectra. The method measures the transfer of saturation throughout a spectrum by reorientational molecular motions. The line shape is sensitive to molecular motions and the saturation properties of the spin label. [Pg.557]


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Saturation systems

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