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[1] Boronate-affinity sol–gel-imprinted membranes with MOFs-functionalized rotary-evaporating layers for high-precision specific recognition
[2] Mof-based basswood nanocomposite membrane of PDDA framework for ultrafast recognition and separation of ribavirin
[3] Double-imprinted mixed matrix membranes with polydopamine-induced nanocomposite for selective recognition and separation applications
[4] Wood-based multi-layered porous imprinted membranes with dual-metal composite nanostructures: Synergistic promotion of rebinding capacity, selectivity and permeability
[5] Dual-imprinted mixed matrix membranes for selective recognition and separation: A synergetic imprinting strategy based on complex initiation system
[6] Freestanding flexible molecularly imprinted nanocomposite membranes for selective separation applications: an imitated core-shell PEI@SiO2-based MIM design
[7] Membrane-associated molecularly imprinted surfaces with tailor-made SiO2@polydopamine-based recognition sites for selective separation of artemisinin
[8] One-pot Synthesis of Multifunctional KGM/PDA/PVDF Composite Membrane for Efficient Treatment of Oil-water Emulsion and Dye
[9] Double-layer-based molecularly imprinted membranes for template-dependent recognition and separation: An imitated core-shell-based synergistic integration design
[10] Three-dimensional macroporous wood-based selective separation membranes decorated with well-designed Nd(III)-imprinted domains: A high-efficiency recovery system for rare earth element
[11] Dual-imprinted organic/inorganic nanocomposite membranes with highly selective polydopamine-intimated nanostructures for pharmaceutically active compound separation
[12] Antifouling molecularly imprinted membranes for pretreatment of milk samples: Selective separation and detection of lincomycin
[13] Biomass-Based Synthesis of Green and Biodegradable Molecularly Imprinted Membranes for Selective Recognition and Separation of Tetracycline
[14] Biomass Activated Carbon/SiO2-Based Imprinted Membranes for Selective Separation of Atrazine: A Synergistic Integration System
[15] Accelerating the design of multilevel/hierarchical imprinted membranes for selective separation applications: A biomass-activated carbon/GO-based loading system
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