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March 21, 2026Environmental Technology & Innovation2 citationsOpen Access

A Bifunctional Anionic Zn(II)-Organic Framework for Adsorption and Fluorescence Sensing of Pb2+ in Rice

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QWQi WuJZJ ZhangSSShan Shan

Key Points

  • The aim is to develop a multifunctional material that can simultaneously remove and sense lead (Pb2+) in agricultural products.
  • Designed and synthesized a three-dimensional anionic Zn-based metal-organic framework (Zn-MOF).
  • Examined the mechanism for Pb2+ removal, including electrostatic interaction, ion exchange, and coordination.
  • Evaluated the fluorescence response linked to Pb2+ concentration.
  • Assessed the framework's sensitivity to nitrobenzene (NB) for broader pollutant detection.
  • The Zn-MOF effectively adsorbs Pb2+ ions through multiple mechanisms.
  • The framework exhibits a strong fluorescence response that correlates with Pb2+ levels.
  • Demonstrated significant fluorescence quenching when exposed to nitrobenzene, indicating versatile sensing capability.

Abstract

The design of advanced functional materials that integrate multiple properties into a single platform represents a significant challenge in materials science. Herein, a three-dimensional anionic Zn-based metal-organic framework ( Zn-MOF ) was designed and synthesized. This material capable of both adsorption and fluorescence sensing of Pb 2+ ions. The removal process is achieved through a multi-mechanism synergy, including electrostatic interaction, ion exchange, and coordination. Concurrently, the adsorption process thereby causes a fluorescence response that is correlated to the Pb 2+ concentration, facilitating its quantification. Furthermore, the framework exhibits excellent fluorescence quenching response towards nitrobenzene (NB), demonstrating its extended application potential for detecting a broader spectrum of hazardous pollutants. This work highlights the significant promise of anionic MOFs in designing integrated materials for environmental remediation and monitoring. A zinc-based metal–organic framework (Zn-MOF) with an anionic framework was developed. This material integrates both adsorption and sensing functions, enabling the simultaneous efficient removal and sensitive detection of heavy metals Pb 2+ from rice and water. ● A Bifunction material for lead removes and detects heavy metal Pb 2+ ● Effectively attract and capture Pb 2+ via electrostatic interactions and coordination. ● The Zn-MOF was also highly sensitive to NB with strong fluorescence quenching.

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Cite This Study

Wu et al. (2026) studied this question.

synapsesocial.com/papers/69be38906e48c4981c67916bhttps://doi.org/10.1016/j.eti.2026.104890
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