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Keyphrases
Reaction Time
100%
Nanocatalyst
100%
Electrooxidation
100%
Product Distribution
100%
Tartronic Acid
100%
Waste Glycerol
100%
Multi-walled Carbon Nanotubes (MWCNTs)
66%
Glycerol
66%
Electrochemical Surface Area
66%
Field Emission Scanning Electron Microscopy (FE-SEM)
33%
High-performance Liquid Chromatography
33%
High Selectivity
33%
High Activity
33%
Catalytic Activity
33%
Uniform Distribution
33%
Cubic Crystal Structure
33%
Face-centered Cubic
33%
Electrochemical Performance
33%
Sulfuric Acid
33%
Electrochemical Stability
33%
Cyclic Voltammetry
33%
Uniformly Distributed
33%
Elemental Composition
33%
Hydrazine
33%
Physical Analysis
33%
XRD Spectroscopy
33%
KOH Solution
33%
Scanning Electron Microscopy Analysis
33%
Chemical Reduction
33%
Mass Activity
33%
Product Selectivity
33%
Chronoamperometry
33%
Reducing Agent
33%
Electrocatalyst
33%
FESEM-EDX
33%
Average Crystallite Size
33%
CNT Nanoparticles
33%
Glyceric Acid
33%
Glycerol Oxidation
33%
Surface Area Distribution
33%
Mesoxalic Acid
33%
Glycerol Valorization
33%
Dihydroxyacetone
33%
Chemistry
Electrooxidation
100%
Glycerol
100%
Product Distribution
100%
Multi-Walled Carbon Nanotube
40%
Surface Area
40%
X-Ray Diffraction
40%
Energy-Dispersive Spectroscopy
40%
Spectroscopy
20%
High-Pressure Liquid Chromatography
20%
Catalyst Activity
20%
Nanoparticle
20%
Chemical Element
20%
Crystal Structure
20%
Oxidation Reaction
20%
Cyclic Voltammetry
20%
Face-Centered Cubic Crystal System
20%
Crystallite
20%
Chronoamperometry
20%
Field Emission Scanning Electron Microscopy
20%
Electrocatalyst
20%
Glyceric Acid
20%
Electron Microscopy
20%
Reducing Agent
20%
Dihydroxyacetone
20%
Chemical Engineering
Carbon Nanotube
100%
Electro-Oxidation
100%
Nanoparticle
50%
High Performance Liquid Chromatography
50%
Chemical Element
50%