Yan Zhao
0000-0003-3660-4669
KU Leuven
28 papers found
Refreshing results…
Enhanced organic solvent nanofiltration of aligned Kevlar composite membrane by incorporated with amino-polystyrene nanospheres
Self-assembled embedding of ion exchange materials into nanofiber-based hydrogel framework for fluoride capture
Metal-organic framework based membranes for selective separation of target ions
Nitrate-Selective Anion Exchange Membranes Prepared using Discarded Reverse Osmosis Membranes as Support
Composite anti-scaling membrane made of interpenetrating networks of nanofibers for selective separation of lithium
Nanofiber Based Organic Solvent Anion Exchange Membranes for Selective Separation of Monovalent anions
Electric field-based ionic control of selective separation layers
The potential of Kevlar aramid nanofiber composite membranes
Technology-driven layer-by-layer assembly of a membrane for selective separation of monovalent anions and antifouling
Thin and robust organic solvent cation exchange membranes for ion separation
Symmetrically recombined nanofibers in a high-selectivity membrane for cation separation in high temperature and organic solvent
A chemically assembled anion exchange membrane surface for monovalent anion selectivity and fouling reduction
Structure architecture of micro/nanoscale ZIF-L on a 3D printed membrane for a superhydrophobic and underwater superoleophobic surface
MOF-positioned polyamide membranes with a fishnet-like structure for elevated nanofiltration performance
“Sandwich”-like structure modified anion exchange membrane with enhanced monovalent selectivity and fouling resistant
Robust Multilayer Graphene–Organic Frameworks for Selective Separation of Monovalent Anions
Mussel-Inspired Monovalent Selective Cation Exchange Membranes Containing Hydrophilic MIL53(Al) Framework for Enhanced Ion Flux
Electric-pulse layer-by-layer assembled of anion exchange membrane with enhanced monovalent selectivity
Tunable Nanoscale Interlayer of Graphene with Symmetrical Polyelectrolyte Multilayer Architecture for Lithium Extraction
Formation of morphologically confined nanospaces via self-assembly of graphene and nanospheres for selective separation of lithium
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