Promising Luminescent Sensors Based on New Maleimide Derivatives of 1,8-Naphthalimide for the Selective Detection of Biogenic Thiols
| Authors: Yuriev D.Yu., Tkachenko S.V., Oshchepkov M.S., Gurov A.A. | Published: 01.06.2026 |
| Published in issue: #2(125)/2026 | |
| DOI: | |
| Category: Chemistry | Chapter: Organic Chemistry | |
| Keywords: 1, 8-naphthalimide, biogenic thiols, Michael reaction, bioconjugation reaction, fluorescence, fluorescence microscopy | |
Synthesis of Phosphazene-Containing Benzoxazine Monomers Based on Bisphenol A and Aniline with Adjustable Functionality
| Authors: Kirianova I.D., Tarasov I.V., Sokolskaya I.B., Kuzmich A.A., Sirotin I.S. | Published: 31.05.2026 |
| Published in issue: #2(125)/2026 | |
| DOI: | |
| Category: Chemistry | Chapter: Organic Chemistry | |
| Keywords: phosphazene-containing benzoxazines, organophosphazenes, polybenzoxazines, modification of benzoxazines, hexachloro-cyclotriphosphazene, aryloxcyclotriphosphazene | |
Long-Term Climatic Tests of High-Density Polyethylene in Very Cold Climate Conditions
| Authors: Fedorov A.L., Petukhova E.S., Argunova A.G. | Published: 01.04.2026 |
| Published in issue: #1(124)/2026 | |
| DOI: | |
| Category: Chemistry | Chapter: Organic Chemistry | |
| Keywords: high-density polyethylene, climatic tests, physical and mechanical characteristics, melt flow index, IR spectroscopy | |
Synthesis and Characterization of Iron Oxide Nanoparticles by Plant Green Method: a Review
| Authors: Takleef D.S., Ahmed M.A. | Published: 01.03.2026 |
| Published in issue: #6(123)/2025 | |
| DOI: | |
| Category: Chemistry | Chapter: Organic Chemistry | |
| Keywords: iron oxide NPs, Green synthesis, plant extract, eco-friendly method | |
Antioxidant Properties of Ethyl Acetate Fraction of Sungkai Leaves (Peronema Canescens Jack): Experimental and Computational Approaches
| Authors: Imelda, Deswita E., Suryati | Published: 19.10.2025 |
| Published in issue: #4(121)/2025 | |
| DOI: | |
| Category: Chemistry | Chapter: Organic Chemistry | |
| Keywords: antioxidants, Sungkai leaves, ethyl acetate, DPPH, density functional theory | |
Microwave-Assisted Extraction of Major Bioactive Phenolic Compounds from Olive Industrial Byproducts using Natural Deep Eutectic Solvents
| Authors: Rahman H.S., Nardi M., Ahmed F.M. | Published: 09.06.2025 |
| Published in issue: #2(119)/2025 | |
| DOI: | |
| Category: Chemistry | Chapter: Organic Chemistry | |
| Keywords: natural deep eutectic solvents, microwave-assisted extraction, phenolic compounds, olive oil industry byproducts | |
Kinetics of Direct Amidation of Stearic Acid with Ethanolamines: Experimental Studies and Mathematical Modeling
| Authors: Yanovsky V.A., Andropov M.O., Romanenko S.V., Churkin R.A., Fakhrislamova R.S. | Published: 11.01.2025 |
| Published in issue: #6(117)/2024 | |
| DOI: | |
| Category: Chemistry | Chapter: Organic Chemistry | |
| Keywords: direct amidation, kinetic study, ethanolamides, alcanolamides, stearic acid | |
Study the Efficiency of Titanium Dioxide Nanoparticles for Water Treatment from Conge Red Dye
| Authors: Yass D.A., Abbas A.M. | Published: 05.09.2024 |
| Published in issue: #4(115)/2024 | |
| DOI: 10.18698/1812-3368-2024-4-121-131 | |
| Category: Chemistry | Chapter: Organic Chemistry | |
| Keywords: nanoparticles, titanium dioxide, adsorption, Congo red dye, kinetic | |
The Physical Properties of Red Mud as Absorbance
| Authors: Handoko A.S., Mursito A.T., Nurjaman F., Prasetyo E., Herlina U., Susanti D., Yuwono S.D., Manaf A., Siburian R., Bahfie F. | Published: 04.09.2024 |
| Published in issue: #4(115)/2024 | |
| DOI: 10.18698/1812-3368-2024-4-109-120 | |
| Category: Chemistry | Chapter: Organic Chemistry | |
| Keywords: red mud, characterization, adsorbance, nano, properties | |
Factors Affecting the Microgels Synthesis by the Inverse Emulsion Method
| Authors: Burin D.A., Rozhkova Yu.A., Vindokurov I.V., Ryabov V.G. | Published: 02.08.2024 |
| Published in issue: #3(114)/2024 | |
| DOI: | |
| Category: Chemistry | Chapter: Organic Chemistry | |
| Keywords: microgels, acrylamide, inverse emulsion method, dispersion medium, particle size | |
