Eleonora-Mihaela Ungureanu

According to our database1, Eleonora-Mihaela Ungureanu authored at least 13 papers between 2021 and 2024.

Collaborative distances:
  • Dijkstra number2 of five.
  • Erdős number3 of four.

Timeline

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Bibliography

2024
Chemically Modified Electrodes Based on 4-((5-Isopropyl-3,8-dimethylazulen-1-yl)methylene)-2-phenyloxazol-5(4H)-one.
Symmetry, February, 2024

2023
Electrochemistry of Rhodanine Derivatives as Model for New Colorimetric and Electrochemical Azulene Sensors for the Detection of Heavy Metal Ions.
Symmetry, February, 2023

Solvent Effects and Metal Ion Recognition in Several Azulenyl-Vinyl-Oxazolones.
Symmetry, February, 2023

Advanced Materials Based on Azulenyl-Phenyloxazolone.
Symmetry, February, 2023

Electrochemical Studies of Azulene Modified Electrodes.
Symmetry, February, 2023

2022
Polyazulene Based Materials for Heavy Metal Ions Detection. 4. Search for Conditions for Thiophen-Vinyl-Pyridine-Azulene Based CMEs Preparation.
Symmetry, 2022

Properties Assessment by Quantum Mechanical Calculations for Azulenes Substituted with Thiophen- or Furan-Vinyl-Pyridine.
Symmetry, 2022

Surface Characterization of Modified Electrodes Based on 4-(Azulen-1-yl)-2, 6-bis((E)-2-(thiophen-2-yl)vinyl)pyridine.
Symmetry, 2022

2021
Evaluation of (Z)-5-(Azulen-1-ylmethylene)-2-thioxothiazolidin-4-ones Properties Using Quantum Mechanical Calculations.
Symmetry, 2021

Electrochemical Comparison on New (Z)-5-(Azulen-1-Ylmethylene)-2-Thioxo-Thiazolidin-4-Ones.
Symmetry, 2021

Recognition of Heavy Metal Ions by Using E-5-((5-Isopropyl-3, 8-Dimethylazulen-1-yl) Dyazenyl)-1H-Tetrazole Modified Electrodes.
Symmetry, 2021

Polyazulene-Based Materials for Heavy Metal Ion Detection. 3. (E)-5-((6-t-Butyl-4, 8-dimethylazulen-1-yl) diazenyl)-1H-tetrazole-Based Modified Electrodes.
Symmetry, 2021

Surface Characterization of New Azulene-Based CMEs for Sensing.
Symmetry, 2021


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