News News
Contact us
  • Customer service number:64321087
  • Commercial service telephone:13918059423
  • Technical service telephone:13918059423
  • Contact person: Mr. Cui 
  • Service email:shxtb@163.com
  • Address: room 107, building 8, no. 100, guilin road, xuhui district, Shanghai

Breaking a Lewis Acidity Trend for Rare Earths by Excited State Quenching

The date of: 2025-08-01
viewed: 29

来源:ACS Publications

Facilitating different chemistries between the rare earth (RE = La–Lu, Sc, Y) ions is of significant interest for their separations. While the bulk of attention has been on maximizing the small differences in their ground state chemistry, interest is beginning to shift toward the differences in their electronic excited states. In this work, we demonstrate modulation of the photostationary state of an azobenzene derivative, Na1, via chelation to a series of REIIIDO3A (DO3A = 1,4,7,10-tetraazacyclododecane-1,4,7-triacetic acid) complexes. The extent of photoisomerization of 1– follows the trend in REIII Lewis acidity with two exceptions: SmIII and ErIII. UV–vis spectroscopy, titration experiments, and computational analysis show that these exceptions are a result of energy transfer rather than differences in ground state chemistry. These results open a pathway to differentiate REs by new photochemical means.

In this work, we study the photophysical properties of a chelating azobenzene derivative upon coordination to REIII complexes: [REIII(DO3A)-1]−. We demonstrate a Lewis acidity trend in the extent of isomerization at the optimized photostationary state (PSS). Importantly, a break in this trend is observed for RE = Sm or Er, which reach much lower Z/E ratios at the PSS than would be expected based on Lewis acidity. This is attributed to energy transfer from excited ligand 1 to SmIII and ErIII excited states, quenching photoisomerization (Figure 1c). These results are an important finding toward generating single ion-selective reactivity among a series of REs that disrupts typical trends in the chemistry of these metals, toward a new basis for selective RE separations.




Hot News / Related to recommend
  • 2026 - 06 - 04
    Click on the number of times: 0
    Effect of Charge Compensation in the Structure, Energetics, and Dopant Distribution in Rare-Earth Element-Doped Zircon Revealed from First-Principles Calculation 来源:ACS PublicationsThe energetics of r...
  • 2026 - 06 - 04
    Click on the number of times: 0
    来源:ACS PublicationsTo enhance the corrosion resistance of epoxy coatings, a three-dimensional (3D) network-like europium–nickel-co-doped zinc oxide (Eu–Ni–ZnO) was synthesized via a combustion method....
  • 2026 - 06 - 03
    Click on the number of times: 0
    Highly Water-Dispersible Upconverting GdPO4Er3+Yb3+ Nanophosphors for Optical, Magnetic, Magnetic Hyperthermia, Anticounterfeit, and In Vitro and Ex-Vivo Multimodal Applications来源:ACS PublicationsHigh...
  • 2026 - 06 - 02
    Click on the number of times: 0
    来源:ACS PublicationsCsPbBr3 perovskite nanocrystals have been investigated as photocatalysts for CO2 reduction owing to their excellent light-harvesting and multi-exciton generation. However, under str...
  • Copyright ©Copyright 2018 2020 Shanghai rare earth association All Rights Reserved Shanghai ICP NO.2020034223
    the host:Shanghai Association of Rare Earth the guide:Shanghai Development and Application Office of Rare Earth the organizer:Shanghai rare earth industry promotion center
    犀牛云提供云计算服务