| Molecules | |
| Modulation of Mn3+ Spin State by Guest Molecule Inclusion | |
| LaurenceC. Gavin1  IrinaA. Kühne1  Helge Müller-Bunz1  GraceG. Morgan1  Kane Esien2  Solveig Felton2  | |
| [1] School of Chemistry, University College Dublin (UCD), Belfield, D04 V1W8 Dublin, Ireland;School of Mathematics and Physics, Queen’s University Belfast, Belfast BT7 1NN, UK; | |
| 关键词: spin crossover; Mn3+; Schiff base; hexadentate; supramolecular; guest inclusion; | |
| DOI : 10.3390/molecules25235603 | |
| 来源: DOAJ | |
【 摘 要 】
Spin state preferences for a cationic Mn3+ chelate complex in four different crystal lattices are investigated by crystallography and SQUID magnetometry. The [MnL1]+ complex cation was prepared by complexation of Mn3+ to the Schiff base chelate formed from condensation of 4-methoxysalicylaldehyde and 1,2-bis(3-aminopropylamino)ethane. The cation was crystallized separately with three polyatomic counterions and in one case was found to cocrystallize with a percentage of unreacted 4-methoxysalicylaldehyde starting material. The spin state preferences of the four resultant complexes [MnL1]CF3SO3·xH2O, (1), [MnL1]PF6·xH2O, (2), [MnL1]PF6·xsal·xH2O, (2b), and [MnL1]BPh4, (3), were dependent on their ability to form strong intermolecular interactions. Complexes (1) and (2), which formed hydrogen bonds between [MnL1]+, lattice water and in one case also with counterion, showed an incomplete thermal spin crossover over the temperature range 5–300 K. In contrast, complex (3) with the BPh4−, counterion and no lattice water, was locked into the high spin state over the same temperature range, as was complex (2b), where inclusion of the 4-methoxysalicylaldehyde guest blocked the H-bonding interaction.
【 授权许可】
Unknown