Chen Yan-Cong, Tong Ming-Liang
Key Laboratory of Bioinorganic and Synthetic Chemistry of Ministry of Education, School of Chemistry, Sun Yat-Sen University Guangzhou 510006 P. R. China
Chem Sci. 2022 Jun 24;13(30):8716-8726. doi: 10.1039/d2sc01532c. eCollection 2022 Aug 4.
The promising future of storing and processing quantized information at the molecular level has been attracting the study of Single-Molecule Magnets (SMMs) for almost three decades. Although some recent breakthroughs are mainly about the SMMs containing only one lanthanide ion, we believe SMMs can tell a much deeper story than the single-ion anisotropy. Here in this , we will try to draw a unified picture of SMMs as a delicately coupled spin system between multiple spin centres. The hierarchical couplings will be presented step-by-step, from the intra-atomic hyperfine coupling, to the direct and indirect intra-molecular couplings with neighbouring spin centres, and all the way to the inter-molecular and spin-phonon couplings. Along with the discussions on their distinctive impacts on the energy level structures and thus magnetic behaviours, a promising big picture for further studies is proposed, encouraging the multifaceted developments of molecular magnetism and beyond.
在分子水平上存储和处理量子化信息的光明前景已经吸引了近三十年来对单分子磁体(SMMs)的研究。尽管最近的一些突破主要是关于仅含一个镧系离子的单分子磁体,但我们认为单分子磁体所讲述的故事远比单离子各向异性要深刻得多。在此,我们将尝试勾勒出一幅单分子磁体作为多个自旋中心之间精细耦合自旋系统的统一图景。分级耦合将逐步呈现,从原子内超精细耦合,到与相邻自旋中心的直接和间接分子内耦合,一直到分子间和自旋 - 声子耦合。随着对它们对能级结构进而对磁行为的独特影响的讨论,提出了一个有前景的进一步研究的宏观图景,鼓励分子磁学及其他领域的多方面发展。