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Engineering
Graphitic Carbon Nitride
100%
Evaluation
100%
Enzymatic Activity
50%
Stretching
50%
Micrograph
50%
Fourier Transform
50%
Band Gap Energy
50%
Coprecipitation
50%
X-Ray Diffraction Pattern
50%
Degradation Rate
50%
Vibration Mode
50%
Antimicrobial Efficacy
50%
Transmissions
50%
Mechanisms
50%
Inhibition
50%
Rod
50%
Surface
50%
Production
50%
Research Work
50%
Quantity
50%
High Resolution
50%
Synthetic Material
50%
Chemistry
Nanomaterial
100%
Oxalonitrile
100%
Yttrium
100%
Nickel
100%
Oxide
100%
Analytical Method
28%
Sample
28%
Rhodamine B
28%
Ion
14%
Degradation Rate
14%
% Inhibition
14%
Band Gap
14%
X-Ray Diffraction
14%
Chemical Element
14%
Fourier Transform Infrared Spectrum
14%
Reducing Agent
14%
Stretching Vibration
14%
Structure
14%
Energy
14%
Procedure
14%
Concentration
14%
Spectra
14%
Energy-Dispersive X-Ray Spectroscopy
14%
High-Resolution Transmission Electron Microscopy
14%
Rod Like Crystal
14%
Coprecipitation
14%
Reaction Mechanism
14%
Surface
14%
Transmittance
14%
Bending Vibration
14%
Material Science
Graphitic Carbon Nitride
100%
Yttrium
100%
Nanocrystalline Material
100%
Nickel
100%
Oxide Compound
100%
Characterization
14%
Enzyme
14%
Reducing Agent
14%
Diffraction Pattern
14%
Coprecipitation
14%
Surface
14%
Energy-Dispersive X-Ray Spectroscopy
14%
X-Ray Diffraction
14%
Catalyst Activity
14%
High-Resolution Transmission Electron Microscopy
14%
Rod
14%
Bending
14%
Materials
14%
Morphology
14%
Chemical Engineering
Yttrium
100%
Nickel Oxide
100%
Carbon Nitride
100%
Nickel
50%
Coprecipitation
50%