Wu Dayu, Guo Dong, Song You, Huang Wei, Duan Chunying, Meng Qingjin, Sato Osamu
State Key Laboratory of Coordination Chemistry, Nanjing University, Nanjing 210093, China.
Inorg Chem. 2009 Feb 2;48(3):854-60. doi: 10.1021/ic8012188.
A new tetranuclear cobalt(II) molecular square in which adjacent Co(II) centers are linked by a mu(2)-bridging oxygen atom and a N-N bridge along the edges of the square has been designed for single-molecule magnets (SMMs) with high anisotropy barriers. The overall intramolecular ferromagnetic coupling at low temperature combined with the slow relaxation at static zero fields suggests a SMM behavior for this molecular square. The zero-field cooled magnetization (ZFCM) and field cooling magnetization (FCM) at 10 Oe illustrate the nonreversibility and bifurcation below 4.5 K. The deviations of magnetization from the saturated value in strong applied fields demonstrate the participation of low-lying excited states. The peaks of the out-of-phase signals are observed corresponding to coincidence of the applied ac field oscillation frequency with the relaxation rate.
一种新型四核钴(II)分子正方形已被设计用于具有高各向异性势垒的单分子磁体(SMM),其中相邻的钴(II)中心通过一个μ(2)-桥连氧原子和一个沿正方形边缘的N-N桥相连。低温下整体分子内铁磁耦合以及静态零场下的缓慢弛豫表明该分子正方形具有单分子磁体行为。10 Oe下的零场冷却磁化强度(ZFCM)和场冷却磁化强度(FCM)表明在4.5 K以下存在不可逆性和分叉现象。在强外加磁场中磁化强度与饱和值的偏差表明低激发态的参与。观察到异相信号的峰值对应于外加交流场振荡频率与弛豫速率的重合。