Ilmiy hamkorligimizning navbatdagi natijasi! 🚀
O‘zbekiston Milliy universiteti Fizika fakulteti olimi, hamkasbimiz Dr. Tohir Akramov bilan hamkorlikdagi maqolamiz "Journal of Physics D: Applied Physics" (Q1; IF-3.2) jurnalida chop etildi! 👏
Toxirning ilmiy jamoamizga qo‘shilganiga 2 yildan oshdi. U qisqa muddat ichida molekulyar modellashtirish sirlarini puxta egallab, jamoamizning yetakchi xodimiga aylandi.
🔬 Tadqiqot nima haqida?
Maqolamiz "Mechanisms of Plasma-Induced Oxidative Degradation of L-Proline and trans-4-Hydroxy-L-proline: A Computational Study" deb nomlanadi. Unda sovuq atmosferik plazmasi ta’sirida proline aminokislotasining qanday qilib oksidlangan formaga o‘tish mexanizmlari molekulyar darajada o‘rganilgan:
- DFTB+ va DFT nazariyalari asosida gaz va suv fazasidagi kimyoviy o‘zgarishlar simulyatsiya qilindi.
- L-proline tarkibidagi halqaning ochilishi, parchalanishi va yangi funksional guruhlar (–OH, C=O) hosil bo‘lish mexanizmlari aniqlandi.
- Maqolaning kimyoviy jihatlarini, uning ilmiy qiymatini oshirishda faol ishtirok etgan shogirdim Davronjon Izzatulla Õğli yoritib berdi.
Barcha mualliflarni va jamoamizni ushbu ajoyib natija bilan tabriklayman! 🎓📈
Maqolani o‘qish uchun havola: https://iopscience.iop.org/article/10.1088/1361-6463/ae8bbb
#ComputationalChemistry #ComputationalPhysics #PlasmaMedicine #coldatmosphericplasma #DFTB+ #DFT #ResearchCollaboration
🇬🇧 Another milestone for our research group! 🚀
We are happy to announce that our collaborative research with Dr. Toxir Akramov, a talented scientist from the Faculty of Physics at the National University of Uzbekistan, has been published in the prestigious "Journal of Physics D: Applied Physics" (Q1; IF-3.2)! 🥳👏
Tohir joined our research team over 2 years ago and rapidly mastered the complexities of molecular modeling, proving himself to be an outstanding asset to our group.
🔬 About the Research:
Our paper, titled "Mechanisms of Plasma-Induced Oxidative Degradation of L-Proline and trans-4-Hydroxy-L-proline: A Computational Study", provides molecular-level insights into how cold plasma-generated reactive species modify biomolecules:
- Using DFTB+ and DFT calculations, we simulated the dynamic evolution of L-proline and trans-4-hydroxy-L-proline in both the gas phase and aqueous solution.
- The simulations revealed key structural changes in L-proline (such as ring opening and fragmentation), while trans-4-hydroxy-L-proline showed higher resistance due to the stabilizing effect of its hydroxyl group.
- The chemical aspects of this complex mechanism were excellently described and integrated by my student, Davronjon Abduvokhidov.
Congratulations to all co-authors and the entire team on this high-impact publication! 🎓📈
Read the full paper here: https://iopscience.iop.org/article/10.1088/1361-6463/ae8bbb
#ComputationalChemistry #ComputationalPhysics #PlasmaMedicine #coldatmosphericplasma #DFTB+ #DFT #ResearchCollaboration
iopscience.iop.org
Mechanisms of plasma-induced oxidative degradation of L-proline and trans-4-hydroxy-L-proline: a computational study
Mechanisms of plasma-induced oxidative degradation of L-proline and trans-4-hydroxy-L-proline: a computational study, Akramov, Tohir, Benassi, Enrico, Yusupov, Maksudbek, Abduvaitov, Otabek, Abduvokhidov, Davronjon, Razzokov, Jamoliddin

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