Ngo Danh X, McClain K Randall, Hrubý Jakub, Franzke Yannick J, Kundu Krishnendu, Kwon Hyunchul, Gould Colin A, Harvey Benjamin G, Hill Stephen, Long Jeffrey R
Department of Chemistry, University of California, Berkeley, Berkeley, California 94720, United States.
U.S. Navy, Naval Air Warfare Center, Weapons Division, Research Department, Chemistry Division, China Lake, California 93555, United States.
J Am Chem Soc. 2025 Apr 23;147(16):13799-13807. doi: 10.1021/jacs.5c01947. Epub 2025 Apr 9.
The synthesis of molecules with strong coupling between electronic and nuclear spins represents an important challenge in molecular quantum information science. Here, we report the synthesis and characterization of the divalent lutetium metallocene complexes Lu(Cp)(Cp) (Cp = pentamethylcyclopentadienyl; Cp = pentaisopropylcyclopentadienyl), Lu(Cp) (Cp = ethyltetraisopropylcyclopentadienyl), and Lu(Cp) (Cp = tetraisopropylcyclopentadienyl). The molecular structures of these complexes, as determined through single-crystal X-ray diffraction, feature a common bent sandwich geometry, with average Cp-Lu-Cp angles ranging from 159.9° to 152.6°. Analysis of continuous-wave electron paramagnetic resonance (EPR) spectra for the complexes reveals nearly isotropic tensors with only a slight deviation from that of a free electron. Moreover, an extremely large splitting of the eight-line spectra indicates the presence of strong hyperfine coupling, and simulations provide isotropic hyperfine coupling constants of = 4.38, 4.30, and 4.17 GHz across the series, where the value of is found to decrease as the Cp-Lu-Cp angle becomes more acute. Notably, these values are the largest yet observed for any lanthanide complex. Moreover, EPR and computational analysis show that the large values of stem from large s-orbital character─up to 41.2%─in the corresponding singly occupied molecular orbitals. To our knowledge, this degree of s-character in a molecular orbital is the largest yet reported for an open-shell isolable complex. These results outline a general strategy toward the isolation of paramagnetic molecules with strong hyperfine coupling and highly isotropic doublet electronic ground states.
合成电子与核自旋之间具有强耦合作用的分子是分子量子信息科学中的一项重要挑战。在此,我们报告了二价镥茂金属配合物Lu(Cp)(Cp)(Cp = 五甲基环戊二烯基;Cp = 五异丙基环戊二烯基)、Lu(Cp)(Cp = 乙基四异丙基环戊二烯基)和Lu(Cp)(Cp = 四异丙基环戊二烯基)的合成与表征。通过单晶X射线衍射确定的这些配合物的分子结构具有共同的弯曲夹心几何构型,平均Cp-Lu-Cp角范围为159.9°至152.6°。对这些配合物的连续波电子顺磁共振(EPR)光谱分析表明,其张量几乎各向同性,仅与自由电子的张量略有偏差。此外,八线光谱的极大分裂表明存在强超精细耦合,模拟给出该系列配合物的各向同性超精细耦合常数分别为 = 4.38、4.30和4.17 GHz,其中 的值随着Cp-Lu-Cp角变得更尖锐而减小。值得注意的是,这些值是迄今在任何镧系配合物中观察到的最大数值。此外,EPR和计算分析表明, 的大值源于相应单占据分子轨道中高达41.2%的大s轨道特征。据我们所知,分子轨道中这种s特征程度是迄今报道的开壳层可分离配合物中最大的。这些结果概述了一种分离具有强超精细耦合和高度各向同性双重电子基态的顺磁分子的通用策略。