TY - JOUR
T1 - Ligand Substituent Effects on the Spin-Crossover Behaviors of Dinuclear Iron(II) Compounds
AU - Wang, Chun Feng
AU - Yao, Zi Shuo
AU - Yang, Guo Yu
AU - Tao, Jun
N1 - Publisher Copyright:
© 2019 American Chemical Society.
PY - 2019/1/22
Y1 - 2019/1/22
N2 - Six analogue compounds with the general formula [Fe 2 (xL) 5 (NCS) 4 ]·yMeOH (x = o-Cl, y = 3 for compound 1; x = m-Cl, y = 5 for 2; x = p-Cl, y = 1 for 3; x = o-Me, y = 2 for 4; x = m-Me, y = 2 for 5; x = p-Me, y = 3 for 6; L = N-phenylmethylene-4-amino-1,2,4-triazole) were synthesized. The two Fe(II) ions are triply bridged by the triazole groups of three xL ligands and each Fe(II) is further capped with two NCS - groups and one more xL ligand. These compounds show regular patterns in their magnetic properties that depend on the positions the substituent groups (-Cl or -Me) ride, i.e., ortho-substituted compounds 1 and 4 undergo complete one-step spin crossover (SCO), while meta-substituted compounds 2 and 5 display incomplete one-step SCO with lower transition temperatures, and para-substituted compounds 3 and 6 are in the high-spin states in all temperature ranges. Structural analyses reveal that the molecular geometry and intermolecular interactions of these compounds, which should account for the differences in magnetic properties, are obviously depend on the positions of substituent groups (steric effect), despite them being electron-withdrawing chlorine or electron-donating methyl, whereas theoretical calculations confirm that the electronic effects of substituent groups exert no effect on the magnetic properties.
AB - Six analogue compounds with the general formula [Fe 2 (xL) 5 (NCS) 4 ]·yMeOH (x = o-Cl, y = 3 for compound 1; x = m-Cl, y = 5 for 2; x = p-Cl, y = 1 for 3; x = o-Me, y = 2 for 4; x = m-Me, y = 2 for 5; x = p-Me, y = 3 for 6; L = N-phenylmethylene-4-amino-1,2,4-triazole) were synthesized. The two Fe(II) ions are triply bridged by the triazole groups of three xL ligands and each Fe(II) is further capped with two NCS - groups and one more xL ligand. These compounds show regular patterns in their magnetic properties that depend on the positions the substituent groups (-Cl or -Me) ride, i.e., ortho-substituted compounds 1 and 4 undergo complete one-step spin crossover (SCO), while meta-substituted compounds 2 and 5 display incomplete one-step SCO with lower transition temperatures, and para-substituted compounds 3 and 6 are in the high-spin states in all temperature ranges. Structural analyses reveal that the molecular geometry and intermolecular interactions of these compounds, which should account for the differences in magnetic properties, are obviously depend on the positions of substituent groups (steric effect), despite them being electron-withdrawing chlorine or electron-donating methyl, whereas theoretical calculations confirm that the electronic effects of substituent groups exert no effect on the magnetic properties.
UR - http://www.scopus.com/inward/record.url?scp=85060371012&partnerID=8YFLogxK
U2 - 10.1021/acs.inorgchem.8b02789
DO - 10.1021/acs.inorgchem.8b02789
M3 - Article
C2 - 30620578
AN - SCOPUS:85060371012
SN - 0020-1669
VL - 58
SP - 1309
EP - 1316
JO - Inorganic Chemistry
JF - Inorganic Chemistry
IS - 2
ER -