Department of Chemistry, San José State University, One Washington Square, San José, CA 95192, USA.
Dalton Trans. 2018 May 8;47(18):6351-6360. doi: 10.1039/c8dt00805a.
The verdazyl 'pincer' ligand, 1-isopropyl-3,5-dipyridyl-6-oxoverdazyl (dipyvd), coordinates iron to form a series of pseudooctahedral coordination compounds [Fe(dipyvd)2]n+ (n = 0-3). In the case where n = 2, the molecular geometry and physical and spectral properties are consistent with a low spin (S = 0) iron(ii) ion coordinated by two ferromagnetically coupled radical ligands. Upon one electron reduction, the room temperature effective magnetic moment of the complex jumps from μeff = 2.64 to μeff = 5.86 as a result of spin crossover of the iron atom combined with very strong ferromagnetic coupling of the remaining ligand centered unpaired electron with the metal center. The sign of the exchange is opposite to that observed in other high spin iron/radical ligand systems and appears to be a result of delocalization of the ligand unpaired electron across the whole molecule. The large change in magnetic properties, combined with a delocalized electronic structure and accessible redox potentials, suggests the utility of this and related systems in the development of novel molecular spintronic devices.
verdazyl“钳子”配体,1-异丙基-3,5-二吡啶基-6-氧代verdazyl(dipyvd),与铁配位形成一系列拟八面体配位化合物[Fe(dipyvd)2]n+(n = 0-3)。在 n = 2 的情况下,分子几何形状和物理及光谱性质与由两个铁磁耦合的自由基配体配位的低自旋(S = 0)铁(ii)离子一致。在一个电子还原后,由于铁原子的自旋交叉以及剩余配体中心未配对电子与金属中心的非常强的铁磁耦合,配合物的室温有效磁矩从μeff = 2.64 跃升至μeff = 5.86。交换的符号与在其他高自旋铁/自由基配体体系中观察到的相反,这似乎是配体未配对电子在整个分子中离域的结果。磁性质的巨大变化,加上离域的电子结构和可及的氧化还原电位,表明该体系和相关体系在开发新型分子自旋电子器件方面具有实用性。