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Molecular Physics
An International Journal at the Interface Between Chemistry and Physics
Volume 50, 1983 - Issue 1
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Original Articles

Anisotropic ligand polarization contributions to the Laporte-forbidden transition probabilities of open-shell metal complexes

Pages 161-171 | Received 27 Jan 1983, Accepted 05 May 1983, Published online: 23 Aug 2006

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Read on this site (4)

P. Stanley May, MichaelF. Reid & F.S. Richardson. (1987) Optical spectra, energy levels and crystal-field analysis of Sm3+ in Na3[Sm(oxydiacetate)3] · 2NaClO4 · 6H2O. Molecular Physics 61:6, pages 1455-1470.
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StephenF. Mason & Brian Stewart. (1985) The anisotropic ligand polarization intensity mechanism in dihedral lanthanide(III) complexes. Molecular Physics 55:3, pages 611-620.
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MichaelF. Reid & FrederickS. Richardson. (1984) Parameterization of electric-dipole intensities in the vibronic spectra of rare-earth complexes. Molecular Physics 51:5, pages 1077-1094.
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Articles from other publishers (19)

N. Ben Amar, T. Koubaa, M.A. Hassairi, I. Kbaïli & M. Dammak. (2015) Optical spectroscopy of Eu3+ ions doped in YAl3 (BO3)4 crystal. Journal of Luminescence 160, pages 95-100.
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Rachel S. Dickins & Alessandra Badari. (2006) A new chiral lanthanide NMR probe for the determination of the enantiomeric purity of α-hydroxy acids and the absolute configuration of α-amino acids in water. Dalton Trans.:25, pages 3088-3096.
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Christiane Görller-Walrand & Koen Binnemans. 1998. 101 264 .
A.J. Bridgeman & M. Gerloch. (1997) Spectral intensities of transition metal complexes. Coordination Chemistry Reviews 165, pages 315-446.
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Brian Stewart. (1993) Ligand polarisability derivatives and anisotropies in the theory of f—f vibronic intensities. Chemical Physics Letters 206:1-4, pages 106-112.
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W. Strȩk & J. Sztucki. (1991) What is the nature of the ligand-bond-involving vibronic transitions in lanthanide (III) complexes?. Chemical Physics Letters 177:4-5, pages 407-411.
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D. M. Moran & F. S. Richardson. (1990) Parametric analysis of f - f transition intensities in trigonal [Ho( ]⋅ ⋅ O . Physical Review B 42:6, pages 3331-3344.
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J. Sztucki & W. Strȩk. (1990) Two-photon f-d absorption in lanthanide complexes with anisotropic ligands. Chemical Physics 143:3, pages 347-357.
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P.Stanley May, C.K. Jayasankar & F.S. Richardson. (1989) Parametric analysis of f-f transition intensities in trigonal Na3[Nd(oxydiacetate)3]·2NaClO4·6H2O. Chemical Physics 138:1, pages 139-156.
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W. Strβk & J. Sztucki. (1989) Radiationless transitions in lanthanide(III) complexes. Effect of ligand anisotropy. Chemical Physics Letters 158:3-4, pages 301-305.
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Brian Stewart. 1989. Vibronic Processes in Inorganic Chemistry. Vibronic Processes in Inorganic Chemistry 327 345 .
J. Sztucki & W. Strβk. (1988) Two-beam two-photon absorption in lanthanide(III) compounds. Chemical Physics 124:2, pages 177-186.
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Mary T. Berry, Charles Schwieters & F.S. Richardson. (1988) Optical absorption spectra, crystal-field analysis, and electric dipole intensity parameters for europium in Na3[En(ODA)3]-2NaClO4·6H2O. Chemical Physics 122:1, pages 105-124.
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Michael F. Reid. (1987) Superposition-model analysis of intensity parameters for Eu3+ luminescence. The Journal of Chemical Physics 87:11, pages 6388-6392.
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J. Sztucki & W. Strȩk. (1987) Ligand polarizability contributions to the electronic Raman scattering in lanthanide(III) systems. Chemical Physics Letters 138:5, pages 410-414.
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W. Strek & J. Sztucki. 1987. Understanding Molecular Properties. Understanding Molecular Properties 403 412 .
J. Sztucki & W. Strȩk. (1986) Two-photon absorption in lanthanide(III) systems: the effect of anisotropy of the ligand. Chemical Physics Letters 125:5-6, pages 520-525.
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Stephen F. Mason & Brian Stewart. 1985. New Frontiers in Rare Earth Science and Applications. New Frontiers in Rare Earth Science and Applications 289 292 .
Stephen F. Mason. (1984) Independent-systems mechanisms for f–f transition probabilities in lanthanide coordination compounds. Inorganica Chimica Acta 94:6, pages 313-322.
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