Gabbani Alessio, Poncet Maxime, Pescitelli Gennaro, Carbonaro Laura, Krzystek J, Colacio Enrique, Piguet Claude, Pineider Francesco, Di Bari Lorenzo, Jiménez Juan-Ramón, Zinna Francesco
Dipartimento di Chimica e Chimica Industriale, University of Pisa Via Moruzzi 13 56124 Pisa Italy
Department of Physics and Astronomy, University of Florence Via Sansone 1 50019 Sesto Fiorentino Italy.
Chem Sci. 2024 Oct 1;15(41):17217-23. doi: 10.1039/d4sc04718d.
Magnetic circularly polarized luminescence (MCPL), the possibility of generating circularly polarized luminescence in the presence of a magnetic field in achiral or racemic compounds, is a technique of rising interest. Here we show that the far-red spin-flip (SF) transitions of a molecular Cr(iii) complex give intense MCD (magnetic circular dichroism) and in particular MCPL ( up to 6.3 × 10 T) even at magnetic fields as low as 0.4 T. Cr(iii) doublet states and SF emission are nowadays the object of many investigations, as they may open the way to several applications. Due to their nature, such transitions can be conveniently addressed by MCPL, which strongly depends on the zero field splitting and Zeeman splitting of the involved states. Despite the complexity of the nature of such states and the related photophysics, the obtained MCPL data can be rationalized consistently with the information recovered with more established techniques, such as HFEPR (high-frequency and -field electron paramagnetic resonance). We anticipate that emissive molecular Cr(iii) species may be useful in magneto-optical devices, such as magnetic CP-OLEDs.
磁圆偏振发光(MCPL),即在非手性或外消旋化合物中存在磁场时产生圆偏振发光的可能性,是一种越来越受关注的技术。在此我们表明,即使在低至0.4 T的磁场下,分子Cr(III)配合物的远红自旋翻转(SF)跃迁也会产生强烈的磁圆二色性(MCD),特别是磁圆偏振发光(高达6.3×10 T)。如今,Cr(III)双重态和SF发射是许多研究的对象,因为它们可能为多种应用开辟道路。由于其性质,此类跃迁可以通过MCPL方便地进行研究,MCPL强烈依赖于相关态的零场分裂和塞曼分裂。尽管此类态的性质及其相关光物理过程很复杂,但所获得的MCPL数据可以与通过更成熟技术(如高频和高场电子顺磁共振,HFEPR)获得的信息一致地进行合理解释。我们预计,发光分子Cr(III)物种可能在磁光器件中有用,如磁性圆偏振有机发光二极管(magnetic CP-OLEDs)。