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Electron transfer in supramolecular systems

Wasielewski MR (1992) Photoinduced electron-transfer in supramolecular systems for artificial photosynthesis. Chem Rev 92 435... [Pg.203]

Wasielewski, M.R. (2002) High time resolution Q-band EPR study of sequential electron transfer in a triad oriented in a liquid crystal, J. Phys. Chem. A 106,1933-1937 Wasielewski, M.R. (1992) Photoinduced electron transfer in supramolecular systems of artificial photosynthesis, Chem. Rev. 92, 435-461. [Pg.225]

For a more exhaustive discussion on photo-induced energy and electron transfer in supramolecular systems, please refer to Refs. (5-7). [Pg.111]

Photoinduced electron transfer in supramolecular systems of fullerenes functionalized with ligands capable of binding to zinc porphyrins and zinc phthalocyanines 05CCR(249)1410. [Pg.58]

Electron Paramagnetic Resonance Spectroscopy, p. 520 Energy and Electron Transfer in Supramolecular Systems. p. 535... [Pg.18]

Electrostatic Interaction. Electron transfers in supramolecular systems with electrostatic interaction have also been reported. A rapid electron transfer within a cofacial heteroporphyrin dim was reported [621]. A cofacial ionic interaction between porphyrin and anthraquinone sulfonate was observed to be controlled by sugar hydroxylate [620]. As a model system of cytochrome c-peroxidase interaction [608,609], a reconstituted myoglobin with Zn porphyrin was associated with methylviologen through electrostatic interaction and the forward electron transfer was observed to be more favored than the back electron transfer [610] (Fig. 56). In a salt-bridged supramolecules having Zn amidinium porphyrin and aromatic carboxylate as a model of arginine-aspartate interaction [606], the electron transfer was considerably more decreased than expected [607]. [Pg.308]

Wasielewski, M. R. Photoinduced Electron Transfer in Supramolecular Systems for Artificial Photosynthesis, Chem. Rev. 1992, 92, 435. [Pg.61]

A peculiar aspect of photoinduced energy and electron transfer in supramolecular systems is that the relative positions and distances between the excited state A and the quencher B can be preorganized so as to control the rate of the process... [Pg.25]

Photoinduced Energy and Electron Transfer in Supramolecular Systems... [Pg.26]


See other pages where Electron transfer in supramolecular systems is mentioned: [Pg.9]    [Pg.515]    [Pg.533]    [Pg.535]    [Pg.536]    [Pg.538]    [Pg.539]    [Pg.540]    [Pg.542]    [Pg.543]    [Pg.544]    [Pg.545]    [Pg.577]    [Pg.929]    [Pg.937]    [Pg.1068]    [Pg.1075]    [Pg.1335]    [Pg.1441]    [Pg.1535]    [Pg.1673]    [Pg.715]   
See also in sourсe #XX -- [ Pg.535 , Pg.536 , Pg.537 , Pg.538 , Pg.539 , Pg.540 , Pg.541 , Pg.542 , Pg.543 , Pg.544 ]




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