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Cited article:

FeII Bistable Materials with Dissymmetrical Ligands: Synthesis, Crystal Structure, Magnetic and Mössbauer Properties of FeII Complexes Based on N4 Schiff Bases Possessing 2‐Pyridyl and 1‐R‐Imidazol‐2‐yl Rings

Nicolas Bréfuel, Sergiu Shova and Jean‐Pierre Tuchagues
European Journal of Inorganic Chemistry 2007 (27) 4326 (2007)
https://doi.org/10.1002/ejic.200700320

FeII Bi-Stable Materials Based on Dissymmetrical Ligands:  N4 Schiff Bases Including 2-Pyridyl and 5-Methylimidazol-4-yl Rings Yield Various FeII Spin-Crossover Phenomena around 300 K

Nicolas Bréfuel, Sergiu Shova, Janusz Lipkowski and Jean-Pierre Tuchagues
Chemistry of Materials 18 (23) 5467 (2006)
https://doi.org/10.1021/cm061524m

Cooperative Spin Crossover and Order−Disorder Phenomena in a Mononuclear Compound [Fe(DAPP)(abpt)](ClO4)2 [DAPP = [Bis(3-aminopropyl)(2-pyridylmethyl)amine], abpt = 4-Amino-3,5-bis(pyridin-2-yl)-1,2,4-triazole]

Galina S. Matouzenko, Azzedine Bousseksou, Serguei A. Borshch, et al.
Inorganic Chemistry 43 (1) 227 (2004)
https://doi.org/10.1021/ic034450e

An improved method for efficient computation of paramagnetic57Fe(III) Mossbauer relaxation spectra

A Putzka
Journal of Physics C: Solid State Physics 21 (19) 3517 (1988)
https://doi.org/10.1088/0022-3719/21/19/006

Spin fluctuations of paramagnetic iron centers in proteins and model complexes: Mössbauer and EPR results

C. E. Schulz, P. Nyman and P. G. Debrunner
The Journal of Chemical Physics 87 (9) 5077 (1987)
https://doi.org/10.1063/1.453675

Absorption and emission Mössbauer line shapes in the presence of electronic transitions

P. Bonville and P. Imbert
Hyperfine Interactions 36 (2) 149 (1987)
https://doi.org/10.1007/BF02395348

Examples for electronic and structural dynamics from mössbauer spectroscopy

F. J. Litterst
Hyperfine Interactions 27 (1-4) 123 (1986)
https://doi.org/10.1007/BF02354749

A method of calculating the function of two noncommuting operators

P. Moretti and M. Mancini
Journal of Mathematical Physics 25 (8) 2486 (1984)
https://doi.org/10.1063/1.526469

Study of time-dependent hyperfine interactions by PAC, M�ssbauer effect, ?SR and NMR: A review of stochastic models

S. Dattagupta
Hyperfine Interactions 11 (1) 77 (1981)
https://doi.org/10.1007/BF01026470

Muon spin rotation study of rare earth aluminum intermetallics

J. Chappert, G. M. Kalvius, L. Asch, et al.
Hyperfine Interactions 9 (1-4) 595 (1981)
https://doi.org/10.1007/BF01020981

Magnetic properties of the spin glass Pd1-yFeyHx: hyperfine and susceptibility studies in a magnetic field

R A Brand and H Georges-Gibert
Journal of Physics F: Metal Physics 10 (11) 2501 (1980)
https://doi.org/10.1088/0305-4608/10/11/022

Mossbauer relaxation spectra of crystal lattice atoms in the presence of diffusing interstitial defects

H Wipf and A Heidemann
Journal of Physics C: Solid State Physics 13 (31) 5757 (1980)
https://doi.org/10.1088/0022-3719/13/31/018

Local moment hyperfine studies of the Kondo system PdHxFe0.003

R. A. Brand, H. Georges-Gibert and C. Kovacic
Journal of Applied Physics 51 (5) 2647 (1980)
https://doi.org/10.1063/1.327995

Magnetic interactions in halobis(morpholyldithiocarbamato) iron(III). II. Magnetic relaxation phenomena

J. M. Grow, G. L. Robbins and H. H. Wickman
The Journal of Chemical Physics 67 (11) 5282 (1977)
https://doi.org/10.1063/1.434706

Breakdown of the "white-noise approximation" in the Mössbauer relaxation spectra: The case ofCs2NaYbCl6

S. Dattagupta, G. K. Shenoy, B. D. Dunlap and L. Asch
Physical Review B 16 (9) 3893 (1977)
https://doi.org/10.1103/PhysRevB.16.3893