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[1] Continuous synergistic double imprinting idea based on MXene-nanocomposite membrane for efficient identification and isolation MATERIALS TODAY NANO,
[2] Click-chemistry synergic MXene-functionalized flexible skeleton membranes for accurate recognition and separation Journal of Colloid and Interface Science,
[3] MOF-initiated imprinted self-supporting basswood membranes for precise recognition and separation of artemisinin JOURNAL OF ENVIRONMENTAL CHEMICAL ENGINEERING,
[4] Precise identification and transport of specific molecules through framework-functionalized membranes with multiple binding sites JOURNAL OF MEMBRANE SCIENCE,
[5] In situ UiO-66-decorated MXene nanosheets for molecularly imprinted membranes with enhanced selective separation of artemisinin SEPARATION AND PURIFICATION TECHNOLOGY,
[6] Construction of UiO-66-NH2-based imprinted nanocages on nanofiber membranes for selective separation of Nd (III) CHEMICAL ENGINEERING JOURNAL,
[7] Synthesis of metal-organic framework hybrid nanocomposites based on MOFs@C3N4 with high selective separation ability for luteolin Separation and Purification Technology,
[8] Metal-free 2D-2D black phosphorus/covalent organic framework p-n heterojunction for efficient visible-light-driven hydrogen evolution without cocatalysts International Journal of Hydrogen Energy,
[9] Biomimetic Dual-Layer Imprinted UiO-66-Based Basswood Membranes for Ibuprofen Recognition and Separation ACS Sustainable Chemistry and Engineering,
[10] Continuous-imprinted-layer nanofiber membrane with MXene-based precise-designed nanocages for high-accuracy recognition and separation of shikimic acid Journal of Colloid and Interface Science,
[11] New Insights into High-Performance Nanocomposite Membranes with Threefold-Imprinted Layers for Selective Recognition and Separation LANGMUIR,
[12] Polydopamine-based multilevel molecularly imprinted nanocomposite membranes comprising metal organic frameworks for selective recognition and separation JOURNAL OF COLLOID AND INTERFACE SCIENCE,
[13] Facile Insights into Hydrothermal Synthesis of Ultrathin Bi4NbO8Cl Nanosheets for Efficient CO2 Photoreduction INORGANIC CHEMISTRY,
[14] Photocatalytic nanocomposite membranes for high-efficiency degradation of tetracycline under visible light: An imitated core-shell Au-TiO2-based design Journal of Alloys and Compounds,
[15] Multifunctional-imprinted nanocomposite membranes with thermo-responsive biocompatibility for selective/controllable recognition and separation application Journal of Colloid and Interface Science,
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