TY - JOUR
T1 - Preparation of dihydroquinazoline carbohydrazone Fe(II) complexes for spin crossover
AU - Shen, Fu Xing
AU - Huang, Wei
AU - Yamamoto, Takashi
AU - Einaga, Yasuaki
AU - Wu, Dayu
N1 - Funding Information:
We thank the financial support from the Priority Academic Program Development of Jiangsu Higher Education Institutions (PAPD). This experimental work is financially funded by NSFC program (21371010 & 21471023).
Publisher Copyright:
© The Royal Society of Chemistry and the Centre National de la Recherche Scientifique 2016.
PY - 2016
Y1 - 2016
N2 - Dihydroquinazoline FeII complexes, namely [Fe(pq-R)2](X)2·xCH3OH·yCH3CN·zH2O (R = 2-py: X = ClO4-, x = 1, y = 0, z = 2 (1), BF4-, x = 0, y = 2, z = 1.75 (2), CF3SO3-, x = 1, y = 1, z = 0 (3); and X = ClO4-: R = 2-OCH3, x = 0, y = 0, z = 1 (4), R = 3-OCH3, x = 0, y = 0, z = 1 (5)), were prepared and the effects of the solvent, counteranion and ligand substituent on spin crossover properties were discussed. Comparison of X-ray diffraction data for these complexes revealed the sole presence of high-spin FeII at 298 K and the bond distances around the FeII center at low temperature fall much closer to those at high temperature, which is consistent with variable-temperature dc magnetic susceptibility data. However, the loss of solvent induced a significant change in the spin state of complexes 1 and 2. Moreover, fits to magnetic data of the desolvated samples provide crossover temperatures of T1/2 = 182.9(6), 157.0(8) and 138.3(5) K for 1-des (ClO4-), 2-des (BF4-) and 3-des (CF3SO3-), respectively, indicative of the anion-dependent transition temperature. The cooperativity operating in the complexes is thought to be mainly from the intermolecular π⋯π interactions between dihydroquinazoline rings on the neighboring molecules. The ligand substituent effect was also investigated on FeII SCO properties. This work revealed the spin crossover properties of new types of dihydroquinazoline Fe(ii) complexes, including the transition temperature, the degree of completion and the cooperative nature of the transition, which can be optimally designed when developing new spin-crossover materials.
AB - Dihydroquinazoline FeII complexes, namely [Fe(pq-R)2](X)2·xCH3OH·yCH3CN·zH2O (R = 2-py: X = ClO4-, x = 1, y = 0, z = 2 (1), BF4-, x = 0, y = 2, z = 1.75 (2), CF3SO3-, x = 1, y = 1, z = 0 (3); and X = ClO4-: R = 2-OCH3, x = 0, y = 0, z = 1 (4), R = 3-OCH3, x = 0, y = 0, z = 1 (5)), were prepared and the effects of the solvent, counteranion and ligand substituent on spin crossover properties were discussed. Comparison of X-ray diffraction data for these complexes revealed the sole presence of high-spin FeII at 298 K and the bond distances around the FeII center at low temperature fall much closer to those at high temperature, which is consistent with variable-temperature dc magnetic susceptibility data. However, the loss of solvent induced a significant change in the spin state of complexes 1 and 2. Moreover, fits to magnetic data of the desolvated samples provide crossover temperatures of T1/2 = 182.9(6), 157.0(8) and 138.3(5) K for 1-des (ClO4-), 2-des (BF4-) and 3-des (CF3SO3-), respectively, indicative of the anion-dependent transition temperature. The cooperativity operating in the complexes is thought to be mainly from the intermolecular π⋯π interactions between dihydroquinazoline rings on the neighboring molecules. The ligand substituent effect was also investigated on FeII SCO properties. This work revealed the spin crossover properties of new types of dihydroquinazoline Fe(ii) complexes, including the transition temperature, the degree of completion and the cooperative nature of the transition, which can be optimally designed when developing new spin-crossover materials.
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U2 - 10.1039/c5nj03095a
DO - 10.1039/c5nj03095a
M3 - Article
AN - SCOPUS:84971350873
SN - 1144-0546
VL - 40
SP - 4534
EP - 4542
JO - New Journal of Chemistry
JF - New Journal of Chemistry
IS - 5
ER -