Inorganic‐Organic Nanoarchitectonics: MXene/Covalent Organic Framework Heterostructure for Superior Microextraction
Jingyu Wu, Zhuo Wang, Shuaihua Zhang, Qian Yang, Zhi Li, Xiaohuan Zang, Xiaoxian Zhao, Ningzhao Shang 等 11 位
Hebei Agricultural University Sun Yat-sen University Hebei University Khon Kaen University
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摘要与影响
One of the difficulties limiting covalent organic frameworks (COFs) from becoming excellent adsorbents is their stacking/aggregation architectures owing to poor morphology/structure control during the synthesis process. Herein, an inorganic‐organic nanoarchitectonics strategy to synthesize the MXene/COF heterostructure (Ti3C2Tx/TAPT‐TFP) is developed by the assembly of β‐ketoenamine‐linked COF on the Ti3C2Tx MXene nanosheets. The as‐prepared Ti3C2Tx/TAPT‐TFP retains the 2D architecture and high adsorption capacity of MXenes as well as large specific surface area and hierarchical porous structure of COFs. As a proof of concept, the potential of Ti3C2Tx/TAPT‐TFP for solid‐phase microextraction (SPME) of trace organochlorine pesticides (OCPs) is investigated. The Ti3C2Tx/TAPT‐TFP based SPME method achieves low limits of detection (0.036–0.126 ng g−1), wide linearity ranges (0.12–20.0 ng g−1), and acceptable repeatabilities for preconcentrating trace OCPs from fruit and vegetable samples. This study offers insights into the potential of constructing COF or MXene‐based heterostructures for the microextraction of environmental pollutants.
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材料 / 化学Covalent Organic Framework Applications
Advanced Photocatalysis Techniques · Metal-Organic Frameworks: Synthesis and Applications
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