Elucidation of the role of metals in the adsorption and photodegradation of herbicides by metal-organic frameworks

Выяснение роли металлов в адсорбции и фотодеградации гербицидов металлоорганическими каркасами
Nan‐Chieh Chiu, Jacob M. Lessard, Emmanuel N. Musa, Logan S. Lancaster, Clara Wheeler, Taylor D. Krueger, Cheng Chen, Trenton C. Gallagher, Makenzie T. Nord, Hongliang Huang, Paul Ha‐Yeon Cheong, Chong Fang, Kyriakos C. Stylianou
2024-02-17

Sc-TBAPyglyphosate photodegradationmetal-organic frameworkssinglet oxygentransient absorption spectroscopy
Abstract Here, four MOFs, namely Sc-TBAPy, Al-TBAPy, Y-TBAPy, and Fe-TBAPy (TBAPy: 1,3,6,8-tetrakis( p -benzoic acid)pyrene), were characterized and evaluated for their ability to remediate glyphosate (GP) from water. Among these materials, Sc-TBAPy demonstrates superior performance in both the adsorption and degradation of GP. Upon light irradiation for 5 min, Sc-TBAPy completely degrades 100% of GP in a 1.5 mM aqueous solution. Femtosecond transient absorption spectroscopy reveals that Sc-TBAPy exhibits enhanced charge transfer character compared to the other MOFs, as well as suppressed formation of emissive excimers that could impede photocatalysis. This finding was further supported by hydrogen evolution half-reaction (HER) experiments, which demonstrated Sc-TBAPy’s superior catalytic activity for water splitting. In addition to its faster adsorption and more efficient photodegradation of GP, Sc-TBAPy also followed a selective pathway towards the oxidation of GP, avoiding the formation of toxic aminomethylphosphonic acid observed with the other M 3+ -TBAPy MOFs. To investigate the selectivity observed with Sc-TBAPy, electron spin resonance, depleted oxygen conditions, and solvent exchange with D 2 O were employed to elucidate the role of different reactive oxygen species on GP photodegradation. The findings indicate that singlet oxygen ( 1 O 2 ) plays a critical role in the selective photodegradation pathway achieved by Sc-TBAPy.
1
Femtosecond transient absorption spectroscopy linked Sc-TBAPy’s superior photocatalysis to enhanced charge transfer and suppressed emissive excimer formation.
2
Four metal-organic frameworks—Sc-TBAPy, Al-TBAPy, Y-TBAPy, and Fe-TBAPy—were evaluated for glyphosate remediation from water.
3
Hydrogen evolution half-reaction experiments confirmed Sc-TBAPy’s superior catalytic activity for water splitting relative to the other MOFs.
4
Sc-TBAPy selectively oxidized glyphosate without forming toxic aminomethylphosphonic acid; mechanistic experiments identified singlet oxygen as critical to this pathway.
5
Sc-TBAPy showed the fastest adsorption and highest photodegradation performance, completely degrading 100% of glyphosate in a 1.5 mM aqueous solution after 5 minutes of irradiation.

Sc-TBAPy and related metal-organic frameworks for glyphosate remediation from water

Metal-dependent adsorption and photodegradation of glyphosate, including charge transfer, photocatalytic activity, selective oxidation, and the role of singlet oxygen

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2024-02-17
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Nan‐Chieh Chiu
Jacob M. Lessard
Emmanuel N. Musa
Logan S. Lancaster
Clara Wheeler
Taylor D. Krueger
Cheng Chen
Trenton C. Gallagher
Makenzie T. Nord
Hongliang Huang
Paul Ha‐Yeon Cheong
Chong Fang
Kyriakos C. Stylianou
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