Ferguson Alan, Lawrence Jon, Parkin Andrew, Sanchez-Benitez Javier, Kamenev Konstantin V, Brechin Euan K, Wernsdorfer Wolfgang, Hill Stephen, Murrie Mark
WestCHEM, Department of Chemistry, University of Glasgow, University Avenue, Glasgow, UK G12 8QQ.
Dalton Trans. 2008 Dec 7(45):6409-14. doi: 10.1039/b807447j. Epub 2008 Oct 8.
[Ni4Cl4(HL)4] () {H2L=HN(CH2CH2OH)2} has S4 symmetry and crystallises in the tetragonal space group I4(1)/a. Two exchange couplings are observed between the four Ni(II) centres, with J1=7.29 cm(-1) and J2=-2.08 cm(-1), leading to an S=4 ground state. The Ni4 complex shows the onset of frequency dependent signals in the out-of-phase ac susceptibility below 3 K. In single-crystal measurements carried out using a micro-SQUID, hysteresis loops are observed below 0.5 K, confirming that shows slow relaxation of magnetisation. The loops are temperature dependent but only weakly sweep rate dependent due to the presence of small intermolecular interactions, which hinder quantum tunnelling. This exchange bias between Ni4 molecules is also seen in high-frequency high-field EPR measurements, which give the parameters D=-0.75 cm(-1), B4 degrees=-6.7x10(-5) cm(-1) and gz=2.275.
[Ni4Cl4(HL)4](其中H2L = HN(CH2CH2OH)2)具有S4对称性,结晶于四方晶系空间群I4(1)/a中。在四个Ni(II)中心之间观察到两种交换耦合,J1 = 7.29 cm(-1) 且J2 = -2.08 cm(-1),导致基态S = 4。Ni4配合物在低于3 K时的异相交流磁化率中出现频率依赖信号。在使用微SQUID进行的单晶测量中,在低于0.5 K时观察到磁滞回线,证实其表现出磁化强度的缓慢弛豫。这些回线与温度有关,但由于存在小的分子间相互作用,对扫描速率的依赖性较弱,这阻碍了量子隧穿。在高频高场EPR测量中也观察到了Ni4分子之间的这种交换偏置,测量给出的参数为D = -0.75 cm(-1)、B4° = -6.7×10(-5) cm(-1) 和gz = 2.275。