β-Ketoenamine-based covalent organic framework for detection and removal of p-phenylenediamine

IF 4.8 3区 材料科学 Q1 CHEMISTRY, APPLIED Microporous and Mesoporous Materials Pub Date : 2024-05-11 DOI:10.1016/j.micromeso.2024.113162
Lihua Li , Yinghu Ma , Weizhi Ou, Haohao Yang, Xiaomei Yang
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Abstract

p-Phenylenediamine (PPD) serves as an important intermediate in materials chemistry and is widely used in the preparation of azo dyes and high polymers. However, the discharge of wastewater from industries containing PPD can pose significant threats to both the environment and human health. Herein, a sensitive and reversible β-ketoenamine-based covalent organic framework (TD-COF) fluorescent probe was fabricated with ketoamine-substituted monomers for detection and facile removal of PPD. Abundant carbonyl groups, the regular pores, and the π-conjugated structure of TD-COF are the key features that help facilitate TD-COF interaction with the analyte. Based on these advantages, TD-COF displayed a low detection limit (0.35 μM), high sensitivity, easy visibility, real-time response, and selective interaction with PPD. Simultaneously, the effective removal of PPD and the circulating utilization of TD-COF provide the potential for practical production applications. Regeneration experimental studies indicated that TD-COF retained satisfactory structural stability after five cycles. Furthermore, based on solid-state NMR, X-ray photoelectron spectroscopy, and density functional theory calculations, these studies verified that hydrogen bonding and π-π interaction mechanisms contribute to fluorescence quenching between PPD and the carbonyl of TD-COF. The research demonstrated the utilization of fluorescent COFs for the sensing and removal of PPD, with the potential for extension to the detection of other pollutants.

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基于β-酮胺的共价有机框架,用于检测和去除对苯二胺
对苯二胺(PPD)是材料化学中的一种重要中间体,广泛用于制备偶氮染料和高聚物。然而,含有 PPD 的工业废水排放会对环境和人类健康造成严重威胁。本文利用酮胺取代单体制备了一种灵敏、可逆的β-酮烯胺基共价有机框架(TD-COF)荧光探针,用于检测和轻松去除PPD。TD-COF 具有丰富的羰基、规则的孔隙和 π 共轭结构,这些关键特征有助于促进 TD-COF 与分析物的相互作用。基于这些优点,TD-COF 具有检测限低(0.35 μM)、灵敏度高、易于观察、实时响应以及与 PPD 的选择性相互作用等特点。同时,TD-COF 能有效去除 PPD 并循环利用,为实际生产应用提供了可能。再生实验研究表明,TD-COF 在经过五个循环后仍能保持令人满意的结构稳定性。此外,基于固态核磁共振、X 射线光电子能谱和密度泛函理论计算,这些研究验证了氢键和 π-π 作用机制有助于 PPD 与 TD-COF 的羰基之间的荧光淬灭。研究表明,荧光 COFs 可用于感知和去除 PPD,并有可能扩展到其他污染物的检测。
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来源期刊
Microporous and Mesoporous Materials
Microporous and Mesoporous Materials 化学-材料科学:综合
CiteScore
10.70
自引率
5.80%
发文量
649
审稿时长
26 days
期刊介绍: Microporous and Mesoporous Materials covers novel and significant aspects of porous solids classified as either microporous (pore size up to 2 nm) or mesoporous (pore size 2 to 50 nm). The porosity should have a specific impact on the material properties or application. Typical examples are zeolites and zeolite-like materials, pillared materials, clathrasils and clathrates, carbon molecular sieves, ordered mesoporous materials, organic/inorganic porous hybrid materials, or porous metal oxides. Both natural and synthetic porous materials are within the scope of the journal. Topics which are particularly of interest include: All aspects of natural microporous and mesoporous solids The synthesis of crystalline or amorphous porous materials The physico-chemical characterization of microporous and mesoporous solids, especially spectroscopic and microscopic The modification of microporous and mesoporous solids, for example by ion exchange or solid-state reactions All topics related to diffusion of mobile species in the pores of microporous and mesoporous materials Adsorption (and other separation techniques) using microporous or mesoporous adsorbents Catalysis by microporous and mesoporous materials Host/guest interactions Theoretical chemistry and modelling of host/guest interactions All topics related to the application of microporous and mesoporous materials in industrial catalysis, separation technology, environmental protection, electrochemistry, membranes, sensors, optical devices, etc.
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