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Orbital degeneracy. Proc. R. Soc. A 161, 220 (1937)
7. Bersuker, I.B.: The Jahn–Teller Effect. Cambridge University Press, Cambridge (2006)
8. Domcke, W., Yarkony, D.R., Köppel, H.: Conical Intersections, Electronic Structure, Dynamics and Spectroscopy. Advanced Series in Physical Chemistry, vol. 15. World Scientific, Singapore (2004)
9. Shapere, A., Wilczek, F.: Geometric Phases in Physics. Advanced Series in Mathematical
Physics, vol. 5. World Scientific, Singapore (1989)
10. Judd, B.R.: The theory of the Jahn–Teller effect. In: Flint, C.D. (ed.) Vibronic Processes in
Inorganic Chemistry. NATO Advanced Study Institutes Series, vol. C288, p. 79. Kluwer, Dordrecht (1988)
11. Bersuker, I.B., Balabanov, N.B., Pekker, D., Boggs, J.E.: Pseudo Jahn–Teller origin of instability of molecular high-symmetry configurations: novel numerical method and results.
J. Chem. Phys. 117, 10478 (2002)
12. Hoffmann, R., Woodward, R.B.: Orbital symmetry control of chemical reactions. Science 167,
825 (1970)
13. Halevi, E.A.: Orbital symmetry and reaction mechanism, the OCAMS view. Springer, Berlin
(1992)
14. Rodger, A., Nordén, B.: Circular Dichroism and Linear Dichroism. Oxford Chemistry Masters. Oxford University Press, Oxford (1997)
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1039/JR9610003683
16. Ceulemans, A., Vanquickenborne, L.G.: On the charge-transfer spectra of iron(II)- and
ruthenium(II)-tris(2, 2 ′ -bipyridyl) complexes. J. Am. Chem. Soc. 103, 2238 (1981)
17. Day, P., Sanders, N.: Spectra of complexes of conjugated ligands. 2. Charge-transfer in substituted phenantroline complexes: intensities. J. Chem. Soc. A 10, 1536 (1967)
18. Yersin, H., Braun, D.: Localization in excited states of molecules. Application to Ru(bipy)
2+
3 .
Coord. Chem. Rev. 111, 39 (1991)
19. Melvin, M.A.: Simplification in finding symmetry-adapted eigenfunctions. Rev. Mod. Phys.
28, 18 (1956)
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21. Biel, J., Chatterjee, R., Lulek, T.: Fiber structure of space of molecular-orbitals within LCAO
method. J. Chem. Phys. 86, 4531 (1987)
22. Ceulemans, A., Fowler, P.W.: Extension of Euler theorem to the symmetry properties of polyhedra. Nature 353, 52 (1991)
23. Hilton, P.J., Wylie, S.: Homology Theory. Cambridge University Press, Cambridge (1967)
24. Hoffmann, R.: Building bridges between inorganic and organic chemistry (Nobel lecture).
Angew. Chem., Int. Ed. Engl. 21, 711 (1982)
25. Mingos, D.M.P., Wales, D.J.: Introduction to Cluster Chemistry. Prentice Hall, EnglewoodCliffs (1990)
26. Fowler, P.W., Manolopoulos, D.E.: An Atlas of Fullerenes. Clarendon, Oxford (1995)
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161
6. Jahn, H.A., Teller, E.: Stability of polyatomic molecules in degenerate electronic states. I.
Orbital degeneracy. Proc. R. Soc. A 161, 220 (1937)
7. Bersuker, I.B.: The Jahn–Teller Effect. Cambridge University Press, Cambridge (2006)
8. Domcke, W., Yarkony, D.R., Köppel, H.: Conical Intersections, Electronic Structure, Dynamics and Spectroscopy. Advanced Series in Physical Chemistry, vol. 15. World Scientific, Singapore (2004)
9. Shapere, A., Wilczek, F.: Geometric Phases in Physics. Advanced Series in Mathematical
Physics, vol. 5. World Scientific, Singapore (1989)
10. Judd, B.R.: The theory of the Jahn–Teller effect. In: Flint, C.D. (ed.) Vibronic Processes in
Inorganic Chemistry. NATO Advanced Study Institutes Series, vol. C288, p. 79. Kluwer, Dordrecht (1988)
11. Bersuker, I.B., Balabanov, N.B., Pekker, D., Boggs, J.E.: Pseudo Jahn–Teller origin of instability of molecular high-symmetry configurations: novel numerical method and results.
J. Chem. Phys. 117, 10478 (2002)
12. Hoffmann, R., Woodward, R.B.: Orbital symmetry control of chemical reactions. Science 167,
825 (1970)
13. Halevi, E.A.: Orbital symmetry and reaction mechanism, the OCAMS view. Springer, Berlin
(1992)
14. Rodger, A., Nordén, B.: Circular Dichroism and Linear Dichroism. Oxford Chemistry Masters. Oxford University Press, Oxford (1997)
15. Orgel, L.E.: Double bonding in chelated metal complexes. J. Chem. Soc. 3683 (1961). doi:10.
1039/JR9610003683
16. Ceulemans, A., Vanquickenborne, L.G.: On the charge-transfer spectra of iron(II)- and
ruthenium(II)-tris(2, 2 ′ -bipyridyl) complexes. J. Am. Chem. Soc. 103, 2238 (1981)
17. Day, P., Sanders, N.: Spectra of complexes of conjugated ligands. 2. Charge-transfer in substituted phenantroline complexes: intensities. J. Chem. Soc. A 10, 1536 (1967)
18. Yersin, H., Braun, D.: Localization in excited states of molecules. Application to Ru(bipy)
2+
3 .
Coord. Chem. Rev. 111, 39 (1991)
19. Melvin, M.A.: Simplification in finding symmetry-adapted eigenfunctions. Rev. Mod. Phys.
28, 18 (1956)
20. Ceulemans, A.: The construction of symmetric orbitals for molecular clusters. Mol. Phys. 54,
161 (1985)
21. Biel, J., Chatterjee, R., Lulek, T.: Fiber structure of space of molecular-orbitals within LCAO
method. J. Chem. Phys. 86, 4531 (1987)
22. Ceulemans, A., Fowler, P.W.: Extension of Euler theorem to the symmetry properties of polyhedra. Nature 353, 52 (1991)
23. Hilton, P.J., Wylie, S.: Homology Theory. Cambridge University Press, Cambridge (1967)
24. Hoffmann, R.: Building bridges between inorganic and organic chemistry (Nobel lecture).
Angew. Chem., Int. Ed. Engl. 21, 711 (1982)
25. Mingos, D.M.P., Wales, D.J.: Introduction to Cluster Chemistry. Prentice Hall, EnglewoodCliffs (1990)
26. Fowler, P.W., Manolopoulos, D.E.: An Atlas of Fullerenes. Clarendon, Oxford (1995)
27. Fowler, P.W., Ceulemans, A.: Electron deficiency of the fullerenes. J. Phys. Chem. A 99, 508
(1995)