A Survey of the Angular Distortion Landscape in the Coordination Geometries of High-Spin Iron(II) 2,6-Bis(pyrazolyl)pyridine Complexes
Author:
Affiliation:
1. School of Chemistry, University of Leeds, Woodhouse Lane, Leeds LS2 9JT, U.K.
Funder
Leverhulme Trust
University of Leeds
Publisher
American Chemical Society (ACS)
Link
https://pubs.acs.org/doi/pdf/10.1021/acs.inorgchem.3c04138
Reference105 articles.
1. Gütlich, P.; Goodwin, H. A., Eds. Spin Crossover in Transition Metal Compounds I–III, Topics in Current Chemistry; Springer-Verlag: Berlin, 2004; pp 233–235.
2. Halcrow, M. A., Ed. Spin-Crossover Materials - Properties and Applications; John Wiley & Sons, Ltd.: New York, 2013; p 568.
3. Spin crossover with thermal hysteresis: practicalities and lessons learnt
4. Preface and introduction
5. Controlling dynamic magnetic properties of coordination clusters via switchable electronic configuration
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1. Role of Alkylated 2,6‐bis(tetrazol‐5‐yl)pyridyl Ligands and Iron(II) Salts in Selecting Spin Crossover Complexes;European Journal of Inorganic Chemistry;2024-04-19
2. Lattice solvent- and substituent-dependent spin-crossover in isomeric iron(ii) complexes;Dalton Transactions;2024
3. Activating a high-spin iron(ii) complex to thermal spin-crossover with an inert non-isomorphous molecular dopant;Dalton Transactions;2024
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