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Titlebook: Endohedral Fullerenes: Electron Transfer and Spin; Alexey A. Popov Book 2017 Springer International Publishing AG 2017 Charget Transport.E

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https://doi.org/10.1007/978-1-349-10224-2lyzing the hyperfine couplings of their ESR spectra. The chapter describes the electron spin resonance and the tunable paramagnetic properties of M@C. (M = Sc, Y, La), Sc.C.@C., Y.@C.N, TiSc.N@C., and others. The electron spin manipulation based on these paramagnetic species has been realized by cha
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https://doi.org/10.1007/978-3-642-67184-5nd their derivatives, as well as oxide clusterfullerene Sc.O.@C. and cyano-clusterfullerene Sc.CN@C.. Spin density distribution in the cation and anion radicals resemble HOMO and LUMO of the neutral molecules. Therefore, EPR spectroscopic studies of the ion radicals of endohedral metallofullerenes p
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https://doi.org/10.1007/978-3-322-80316-0ries of Ce-EMFs, analysis of the temperature dependence of chemical shifts in NMR spectra proved that the main contribution to the paramagnetic shifts is the dipolar “pseudocontact” term. As this term includes geometric parameters of the molecule, position and dynamics of endohedral metal atoms can
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Richard Hoggart, , and The Cultural Turn, and a few other closed- and open-cage fullerenes and isolated in sufficient quantities and purity to be characterized by a variety of spectroscopic and other physical methods. Of particular interest has been determining the effects of encapsulation on the properties both of the cage and of the trap
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Alexey A. PopovFirst monograph on endohedral fullerenes since 2001.First systematic description of the electron transfer in endohedral fullerenes for all phases.Comparison of electrochemical and STM data.Magnetism o
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