Visible light mediated photocatalysis by lanthanide metal-organic frameworks: enhanced specificity and mechanistic insights

被引:0
|
作者
Gupta, Ruchika [1 ]
Aashish, Shubhangi [1 ]
Upma, Pramit K. [1 ]
Majumdar, Shubhangi [2 ]
Chowdhury, Pramit K. [2 ]
Gupta, Rajeev [1 ]
机构
[1] Univ Delhi, Dept Chem, Delhi 110007, India
[2] Indian Inst Technol, Dept Chem, Delhi, India
关键词
SINGLET OXYGEN; MOF; METALLOLIGANDS; CONVERSION; ALCOHOLS; ENERGY;
D O I
10.1039/d4sc04105d
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The utilization of earth-abundant photosensitizers with visible light absorption to enable sustainable photocatalysis is a long-standing challenge. Overcoming such a challenge, in this work, two lanthanide (Ln3+ = Tb, Eu) based metal-organic frameworks (Ln-MOFs) have been synthesized utilizing a Co3+-based metalloligand. Both Ln-MOFs function as remarkable photocatalysts for the selective oxidation of assorted alcohols and sulfides to their corresponding aldehydes/ketones and sulfoxides using visible light. The photophysical behavior of both Ln-MOFs and mechanism of photocatalysis is comprehensively investigated using time-resolved transient absorption spectroscopy, electrochemical impedance spectroscopy, electron paramagnetic resonance spectroscopy, photoluminescence and phosphorescence studies. In both Ln-MOFs, a metalloligand acts as a light-harvester, being excited by visible light, while Ln3+ ions endow the resulting MOFs with long-lived triplet excited states. Ultrafast transient absorption spectroscopy, further supported by electron paramagnetic resonance spectra, revealed excited-state electron transfer from metalloligands to the Ln3+ ions and transient generation of Ln2+ sites alongside the facilitation of intersystem crossing. The excited Ln2+ ions transfer energy to the ground-state triplet oxygen (3O2) to generate singlet oxygen (1O2). The HOMO-LUMO positions of both Ln-MOFs support the generation of (center dot)O2- and 1O2 but inhibit strongly-oxidizing yet non-selective (OH)-O-center dot radicals. Scavenger experiments, 1O2 traps and electron paramagnetic resonance spectra confirmed the generation of singlet oxygen. The heavy-metal effect of a lanthanide ion in Ln-MOFs for the generation of triplet excitons is confirmed by the synthesis of a non-heavy-metal analogue involving a zinc ion via a single-crystal-to-single-crystal transformation strategy. The present results are noteworthy and may aid in the development of other earth-abundant metalloligand-based photocatalysts for challenging yet sustainable catalysis.
引用
收藏
页码:18952 / 18968
页数:17
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