Physical Characteristic and Molecular Structure of Spin-Crossover Iron(III) Complexes of Monoclinic Form with Hexadentate Ligands Derived from Triethylenetetramine and Salicylaldehyde [Fe(sal2trien)]BPli4·acetone
Author:
Publisher
The Chemical Society of Japan
Subject
General Chemistry
Link
https://www.jstage.jst.go.jp/article/bcsj1926/64/5/64_5_1522/_pdf
Reference17 articles.
1. Spin-state/stereochemical relationships in iron porphyrins: implications for the hemoproteins
2. Spin-State Transformation in Some Iron(III) Complexes with Schiff Base Ligands
3. Synthesis and spin-state studies in solution of .gamma.-substituted tris(.beta.-diketonato) iron(III) complexes and their spin-equilibrium .beta.-ketoimine analogues derived from triethylenetetramine
4. Variable spin iron(III) chelates with hexadentate ligands derived from triethylenetetramine and various salicylaldehydes. Synthesis, characterization, and solution state studies of a new 2T .dblarw. 6A spin equilibrium system
5. Iron(III) chelates with hexadentate ligands from triethylenetetramine and .beta.-diketones or salicylaldehyde. Spin state dependent crystal and molecular structures of [Fe(acac)2trien]PF6(S = 5/2), [Fe(acacCl)2trien]PF6(S = 5/2), [Fe(sal)2trien]Cl.2H2O(S = 1/2), and [Fe(sal)2trien]NO3.H2O(S = 1/2)
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2. Peculiar Spin-Crossover Behavior in the 2D Polymer K[FeIII(5Cl-thsa)2];Inorganic Chemistry;2021-11-10
3. Multi‐Magnetic Properties of a Novel SCO [Fe(3‐OMe‐Sal 2 trien)][Fe(tdas) 2 ]·CH 3 CN Salt;European Journal of Inorganic Chemistry;2020-11-12
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