Tacconi Leonardo, Cini Alberto, Raza Arsen, Tesi Lorenzo, Bartolini Paolo, Taschin Andrea, van Slageren Joris, Briganti Matteo, Sorace Lorenzo, Fittipaldi Maria, Perfetti Mauro
Department of Chemistry "Ugo Schiff", University of Florence and INSTM Research Unit, Via della Lastruccia 3-13, 50019 Sesto Fiorentino (FI), Italy.
Department of Physics and Astronomy, University of Florence and INSTM Research Unit, Via Sansone 1, 50019 Sesto Fiorentino (FI), Italy.
J Am Chem Soc. 2025 Sep 10;147(36):33040-33051. doi: 10.1021/jacs.5c10840. Epub 2025 Aug 26.
The Spin-Electric Effect (SEE) on molecules─the influence of external electric fields on molecular spin states─offers a compelling route toward low-power molecule-based spintronic applications. However, SEE remains elusive in molecular systems due to typically weak spin-electric field coupling. In this study, we observe a relevant SEE in a mononuclear lanthanide complex using Electric Field Modulated Electron Paramagnetic Resonance spectroscopy. We reveal a marked anisotropy of the SEE, evidencing that the most perturbed tensor component is the one perpendicular to the electric field, providing hints for the most convenient experimental configuration to tune ad hoc spin transitions. calculations in synergy with the experimental results revealed that molecular symmetry breaking plays a fundamental role. We also point out the crystal field parameters that are most strongly modulated by the presence of an electric field. These parameters are all off-diagonal, indicating effective electric-field-mediated state mixing.
分子的自旋 - 电效应(SEE)——外部电场对分子自旋态的影响——为低功耗分子基自旋电子学应用提供了一条引人注目的途径。然而,由于典型的自旋 - 电场耦合较弱,SEE在分子系统中仍然难以捉摸。在本研究中,我们使用电场调制电子顺磁共振光谱在单核镧系配合物中观察到了相关的SEE。我们揭示了SEE的显著各向异性,证明受扰最大的张量分量是垂直于电场的分量,这为调整特定自旋跃迁的最便捷实验配置提供了线索。与实验结果协同进行的计算表明,分子对称性破缺起着根本性作用。我们还指出了受电场存在影响最强的晶体场参数。这些参数都是非对角的,表明存在有效的电场介导态混合。