Oshio Hiroki, Nihei Masayuki, Yoshida Ayano, Nojiri Hiroyuki, Nakano Motohiro, Yamaguchi Akira, Karaki Yoshitomo, Ishimoto Hidehiko
Department of Chemistry, University of Tsukuba, Tennodai 1-1-1, Tsukuba 305-8571, Japan.
Chemistry. 2005 Jan 21;11(3):843-8. doi: 10.1002/chem.200400368.
The reaction of 1/3 equivalent of CuCl2.2H2O with MnCl2.4H2O and 5-bromo-2-salicylideneamino-1-propanol (H(2)5-Br-sap) in methanol gave dark brown crystals of [MnIIICuIICl(5-Br-sap)2(MeOH)] (1). Complex 1 has an alkoxo-bridged dinuclear core of MnIII and CuII ions, which have elongated octahedral and square-planar coordination geometries, respectively. In dc magnetic susceptibility measurements, chi(m)T values increased as the temperature was lowered, followed by a sudden decrease below 20 K. This behavior is indicative of the occurrence of intramolecular ferromagnetic interactions, and fitting gave an S=5/2 spin ground state with an exchange coupling constant J(MnCu) of +78 cm(-1). Magnetization data collected as a function of temperature and applied magnetic field were analyzed by using a spin Hamiltonian with isotropic Zeeman and axial zero-field splitting (ZFS) terms, and a negative D(5/2) value (-1.86 cm(-1)) was obtained. A high-field EPR (HFEPR) spectrum (342.0 GHz) at 4.2 K was composed of four peaks, and two additional peaks at higher magnetic field appeared as the temperature was increased. The temperature dependences in the HFEPR spectra are indicative of a negative D(5/2) value, and fitting of the data gave D(5/2)=-1.81 cm(-1). In the ac magnetic susceptibility measurements, frequency dependent in-phase (chi(m)') and out-of-phase (chi(m)'') signals with peak maxima at 0.7-1.5 K were observed and small peaks below 0.7 K appeared. The ac susceptibility data supports that 1 is a single-molecule magnet (SMM). Arrhenius plots for the chi(m)'' peaks from 0.7-1.5 K gave the re-orientation energy barrier (DeltaE) of 10.5 K with a pre-exponential factor of 8.2x10(-8) s.
在甲醇中,将1/3当量的二水合氯化铜与四水合氯化锰以及5-溴-2-水杨基亚氨基-1-丙醇(H(2)5-Br-sap)反应,得到了深棕色晶体[MnIIICuIICl(5-Br-sap)2(MeOH)](1)。配合物1具有由锰(III)和铜(II)离子通过烷氧基桥连的双核核心,它们分别具有拉长的八面体和平面正方形配位几何构型。在直流磁化率测量中,χmT值随着温度降低而增加,随后在20 K以下突然下降。这种行为表明发生了分子内铁磁相互作用,拟合得到S = 5/2的自旋基态,交换耦合常数J(MnCu)为 +78 cm(-1)。通过使用具有各向同性塞曼和轴向零场分裂(ZFS)项的自旋哈密顿量分析了作为温度和外加磁场函数收集的磁化数据,得到了负的D(5/2)值(-1.86 cm(-1))。在4.2 K下的高场电子顺磁共振(HFEPR)谱(342.0 GHz)由四个峰组成,并且随着温度升高在更高磁场处出现另外两个峰。HFEPR谱中的温度依赖性表明了负的D(5/2)值,数据拟合得到D(5/2)= -1.81 cm(-1)。在交流磁化率测量中,观察到了频率相关的同相(χm')和异相(χm'')信号,其峰值最大值出现在0.7 - 1.5 K,并且在0.7 K以下出现小峰。交流磁化率数据支持1是一种单分子磁体(SMM)。对0.7 - 1.5 K的χm''峰的阿仑尼乌斯图给出了10.5 K的重取向能垒(ΔE),预指数因子为8.2×10(-8) s。