Keyphrases
Aqueous Media
100%
PH-sensitive
100%
Polyelectrolyte
100%
Electroactive
100%
Redox
100%
Chromate
100%
Separation Process
50%
Carbon Nanotubes
50%
PH Dependence
50%
Electrochemical Performance
50%
Selective Separation
50%
Ferrocene
50%
Methacrylate
50%
Homopolymer
50%
Comonomer
50%
Macromolecules
50%
Redox Potential
50%
Redox-active
50%
Vanadium
50%
Electrochemical Sensing
50%
Chromium
50%
Zwitterion
50%
Water Purification
50%
Stimuli-responsive
50%
Redox Activity
50%
Hydrophilicity
50%
Homogeneous-heterogeneous
50%
Aqueous Electrolyte
50%
Redox-active Materials
50%
Vinylferrocene
50%
Oxyanions
50%
Molecular Recognition
50%
Carbon Nanotube Composites
50%
Heterogeneous Configuration
50%
Electrochemical Separation
50%
Polymer Bearing
50%
Ferrocene-based Polymers
50%
Active Properties
50%
Redox-active Moieties
50%
Non-redox
50%
Nanoporous Carbon
50%
Extendibility
50%
Metal Oxyanions
50%
Poly(vinylferrocene)
50%
Acid Dissociation
50%
Polymeric Structure
50%
Metallopolymers
50%
Electrolyte Environment
50%
Chemistry
Ferrocene
100%
Vinylferrocene
100%
Oxyanion
100%
Carbon Nanotube
100%
Hydrogen
50%
Methacrylate
50%
Macromolecule
50%
Single Monomer Polymer
50%
Vanadium
50%
Redox Potential
50%
Molecular Recognition
50%
Electrolyte Solution
50%
Hydrophilicity
50%
Nanoporosity
50%
electrode
50%
Transition Metal
50%
Water Purification
50%
Material Science
Carbon Nanotube
100%
Polyelectrolyte
100%
Chromium
50%
Vanadium
50%
Transition Metal
50%
Chemical Engineering
Carbon Nanotube
100%
Transition Metal
50%
Water Purification
50%
Separation Method
50%