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

Observing Kinetic Selectivity in Anthracene Photodimerization through Selective Quenching by Excited States of Proximate Rare Earth Cations

The date of: 2026-07-03
viewed: 2

来源:ACS Publications

Toward the development of new separation strategies for rare earth elements (REs; La–Lu, Y, Sc), the discovery of divergent reactivity for RE complexes is an essential first step. We report the synthesis, photophysical characterization, and photodimerization reactivity of a series of kinetically inert rare earth coordination compounds encapsulated by a 1,4,7,10-tetraazacyclododecane-1,4,7-triacetic acid (DO3A) ligand appended with a triazole-bridged anthracene arm, RE(DO3A-anthracene), 2-RE (RE = La–Pr, Sm–Lu, Y). Ultraviolet (UV) light irradiation of all 2-RE compounds produces the respective photodimers, 3-RE. The reaction kinetics are studied using UV–vis spectroscopy and are found to have no correlation with the size of the RE cation, a rare outcome in rare earth chemistry. A dichotomy is found between diamagnetic, fast-reacting congeners and paramagnetic, slow-reacting congeners, with 2-Ce, 2-Gd, and 2-Tb as notable paramagnetic, fast-reacting exceptions. We hypothesize that photodimerization can occur for this system by a singlet and/or triplet pathway, the latter of which can be suppressed by the addition of a triplet quencher (cyclooctatetraene, COT), which promotes the singlet-only pathway. The reaction rates of the singlet-only pathway correlate well with the fluorescence lifetimes of 2-RE. The findings presented here are discussed in the context of a previously reported solid-state photodimerization of a series of anthracene-based rare earth compounds, wherein differences are attributed to the intermediacy of an excimer in the solid-state reaction; no such intermediacy is observed in the present solution studies. This study lays key groundwork for a selective rare earth separation system based on anthracene photodimerization, where kinetic selectivity is achieved through excited-state quenching.


Hot News / Related to recommend
  • 2026 - 07 - 17
    Click on the number of times: 0
    Hybrid Solvation Model for Analyzing the Binding of Yttrium and Calcium Cations to the Lanmodulin Protein Using the Fragment Molecular Orbital Method 来源:ACS PublicationsA hybrid solvation model combin...
  • 2026 - 07 - 16
    Click on the number of times: 0
    来源:ACS PublicationsChemically flexible A2B2O7 oxides are attractive candidates for designing structure-specific functional materials by judicious substitution. However, modulating functionality by sub...
  • 2026 - 07 - 16
    Click on the number of times: 0
    来源:ACS PublicationsRational design of Eu2+-activated red phosphors under visible light excitation remains a critical challenge in various fields such as photonics, optoelectronics, and white-light-emi...
  • 2026 - 07 - 15
    Click on the number of times: 0
    来源:ACS PublicationsPolaron formation has emerged as an important mechanism for unconventional luminescence in metal halide semiconductors. Here, we show that incomplete rare-earth-ion doping in the ze...
  • 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