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Cellulose nanofiber-templated metal-organic frameworks for fluorescent detection of methyl parathion pesticides

delete2024-06-01
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PRE
AI
K
Kailong Zhang
T
Thomas Elder
Z
Z.‐Y. Cheng
K
Ke Zhan
Y
Yucheng Peng
李密 cover
李密 (Mi Li) *
DOI:10.1016/j.jece.2024.112670delete
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Abstract

Abstract

En 中文
Methyl parathion is a typical organophosphorus pesticide that poses threats to the global environment and human health. In this study, we developed a portable 2D sensing pad for monitoring methyl parathion based on the aggregation-induced emission (AIE) properties of an innovated hybrid material that integrates cellulose nanofibers (CNFs) with luminescent metal-organic frameworks (LMOFs). The hybrid material enhanced the flexibility and moldability of LMOFs and significantly improved the scalability of sensing material. The resulting CNF/LMOF material was shaped into a 2D pad, exhibiting fluorescent properties under UV exposure. The fluorescence of the pad was quenchable upon exposure to methyl parathion. This host-guest interaction enabled the precise quantification of the pesticide's concentration by monitoring the intensity variation of the fluorescence at 405 nm wavelength. We further engineered these hybrid pads into a user-friendly and portable sensing prototype, and then validated them with real sample testing. Time-dependent Density Functional Theory calculations were employed to elucidate the underlying fluorescence quenching mechanism triggered by methyl parathion. This work introduces a practical and sustainable sensing platform for pesticide detection.
Keywords:
Cellulose nanofibers
Metal -organic frameworks
Aggregation -induced emission
Luminescent sensor
Pesticide detection

Journal

Journal of Environmental Chemical Engineering cover
Journal of Environmental Chemical Engineering
IF:
7.2
Papers:
2.2W
Citations:
8.6W

Organization

U
ut institute of agriculture
Scholars:
977
Papers: 803
Citations: 0
University of Tennessee System cover
University of Tennessee System
Scholars:
2.8W
Papers: 2.6W
Citations: 115
U
University of Tennessee Knoxville
Scholars:
1.1W
Papers: 9.4K
Citations: 17
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