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High-Flux Ultrafiltration Membranes Combining Artificial Water Channels and Covalent Organic Frameworks
by
Li, Yingdong
, Guo, Jinwen
, Li, Pingli
, Chen, Jinguang
, Liu, Kai
in
Antifungal agents
/ Aquaporins
/ artificial water channels
/ Caustic soda
/ Channels
/ COFs
/ composite structure
/ Composite structures
/ Contact angle
/ Covalent organic frameworks
/ high-flux membranes
/ Histamine
/ Imidazole
/ Membrane separation
/ Membranes
/ Microscopy
/ NMR
/ Nuclear magnetic resonance
/ Permeability
/ Polyacrylonitrile
/ Porous materials
/ Purification
/ Rejection rate
/ Self-assembly
/ Substrates
/ Ultrafiltration
/ Water
2022
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High-Flux Ultrafiltration Membranes Combining Artificial Water Channels and Covalent Organic Frameworks
by
Li, Yingdong
, Guo, Jinwen
, Li, Pingli
, Chen, Jinguang
, Liu, Kai
in
Antifungal agents
/ Aquaporins
/ artificial water channels
/ Caustic soda
/ Channels
/ COFs
/ composite structure
/ Composite structures
/ Contact angle
/ Covalent organic frameworks
/ high-flux membranes
/ Histamine
/ Imidazole
/ Membrane separation
/ Membranes
/ Microscopy
/ NMR
/ Nuclear magnetic resonance
/ Permeability
/ Polyacrylonitrile
/ Porous materials
/ Purification
/ Rejection rate
/ Self-assembly
/ Substrates
/ Ultrafiltration
/ Water
2022
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High-Flux Ultrafiltration Membranes Combining Artificial Water Channels and Covalent Organic Frameworks
by
Li, Yingdong
, Guo, Jinwen
, Li, Pingli
, Chen, Jinguang
, Liu, Kai
in
Antifungal agents
/ Aquaporins
/ artificial water channels
/ Caustic soda
/ Channels
/ COFs
/ composite structure
/ Composite structures
/ Contact angle
/ Covalent organic frameworks
/ high-flux membranes
/ Histamine
/ Imidazole
/ Membrane separation
/ Membranes
/ Microscopy
/ NMR
/ Nuclear magnetic resonance
/ Permeability
/ Polyacrylonitrile
/ Porous materials
/ Purification
/ Rejection rate
/ Self-assembly
/ Substrates
/ Ultrafiltration
/ Water
2022
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High-Flux Ultrafiltration Membranes Combining Artificial Water Channels and Covalent Organic Frameworks
Journal Article
High-Flux Ultrafiltration Membranes Combining Artificial Water Channels and Covalent Organic Frameworks
2022
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Overview
Artificial water channels (AWCs) have been well investigated, and the imidazole-quartet water channel is one of the representative channels. In this work, covalent organic frameworks (COFs) composite membranes were fabricated through assembling COF layers and imidazole-quartet water channel. The membranes were synthesized by interfacial polymerization and self-assembly process, using polyacrylonitrile (PAN) ultrafiltration substrates with artificial water channels (HC6H) as modifiers. Effective combination of COF layers and imidazole-quartet water channels provide the membrane with excellent performance. The as-prepared membrane exhibits a water permeance above 271.7 L·m−2·h−1·bar−1, and high rejection rate (>99.5%) for CR. The results indicated that the composite structure based on AWCs and COFs may provide a new idea for the development of high-performance membranes for dye separation.
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