School of Chemistry, Tel Aviv University, Tel Aviv, Israel.
Department of Chemistry and Industrial Chemistry, University of Pisa, Pisa, Italy.
Chirality. 2021 Mar;33(3):124-133. doi: 10.1002/chir.23293. Epub 2020 Dec 30.
Chiral Eu -based systems are frequently studied via circularly polarized luminescence spectroscopy. The emission lifetimes of each circular polarization, however, are virtually always ignored, because in a homogeneous sample of emitters, there should be no difference between the two. However, we show that in less robust Eu complex structures, as in the chiral complex Eu (facam) , a difference in the lifetimes of the two circularly polarized emission components arises due to heterogeneity of the complexes. In this case, each species within the sample could have different degrees of circularly polarized luminescence and decay rates at certain emission lines. The superposition of the emission components of the various chiral species leads to an overall difference in decay rate between the two circular polarizations. Such a difference is also shown for Eu -doped chiral TbPO ·D O nanocrystals. We believe that this kind of measurement could be a unique tool for determining the homogeneity of a lanthanide-based chiral system, where other methods might fail in this task.
手性 Eu 基体系通常通过圆偏振发光光谱进行研究。然而,每个圆偏振的发射寿命几乎总是被忽略,因为在发射体的均匀样品中,两者之间应该没有区别。然而,我们表明,在不太稳定的 Eu 配合物结构中,例如手性配合物 Eu(facam),由于配合物的不均匀性,两个圆偏振发射分量的寿命会出现差异。在这种情况下,样品中的每个物质在某些发射线处可能具有不同程度的圆偏振发光和衰减率。各种手性物质的发射分量的叠加导致两个圆偏振之间的整体衰减率差异。Eu 掺杂手性 TbPO·D O 纳米晶体也表现出这种差异。我们相信,这种测量方法可能是确定基于镧系元素的手性体系均匀性的独特工具,而其他方法可能在这项任务中失败。