| publication | year |
|---|---|
Mondal, A.; Shit, S. C.; Mondal, I. A MnNi-heterometallic perovskite hydroxide (pre) catalyst for electrochemical alcohol oxidation: insight into the active phase.J. Mater. Chem. A, 2025, 13(3), 2327–2334. |
2025 |
Sk, S.; Islam, H.; Abraham, B. M.; Mondal, I.; Pal, U. Defects in MOFs for photocatalytic water reduction to hydrogen generation: from fundamental understanding to state-of-the-art materials. Small Methods, 2025, 9(7), 2401689 |
2025 |
Mathew, R.; Gupta, J.; Devadarsan, M. D.; Mavi, S.; Jasil, M.; Fereiro, J. A.; Joseph, B.; Parida, K. N.; Thomas, B. Dynamic Nuclear Polarization of TEMPO Radical Cross Conjugated with a Thioanisole Scaffold. Solid State Nucl. Magn. Reson. 2025, 102, 102005. |
2025 |
Reji, J. G.; Michael, M.; Aswin, S.; Rasheed, A. K.; Krishna, G.; Sheves, M.; Fereiro, J. A. The Role of Vesicle Fusion Temperature in Dictating the Efficiency of Charge Transport via Bacteriorhodopsin?Based Molecular Junctions. Small 2025, 21, 2502111.* |
2025 |
Thomas, A. A.; Eledath, A. N.; Bushiri, M. J.; Muthukrishnan, A. Trifunctional GdCoO? Perovskite Electrocatalysts for Zinc–Air Battery and Water Electrolysis Applications. Mater. Adv. 2025, 6(15), 5064–5073. |
2025 |
Baskaran, S.; Mageswari, G. P.; Muthukrishnan, A. MOF?Derived CoW?Alloy Carbon Nanotubes: A Trifunctional Electrocatalyst for Water Splitting and Zinc?Air Battery Applications. ChemCatChem 2025, 17(15), e00598. |
2025 |
Eledath, A. N.; Muthukrishnan, A. Mechanochemical Doping of Boron and Nitrogen on Graphite as Metal-Free Bifunctional Electrocatalysts for Zinc–Air Battery. Electrochim. Acta 2025, 525, 146132. |
2025 |
Geetha, P. V.; Eledath, A. N.; Muthukrishnan, A. Highly Durable Bifunctional LaCo?Ni?–?O?-Based Electrocatalysts for Zinc–Air Batteries. ACS Appl. Energy Mater. 2025, 8(14), 10212–10225. |
2025 |
Thomas, A. A.; Eledath, A. N.; Bushiri, M. J.; Muthukrishnan, A. Trifunctional GdCoO? Perovskite Electrocatalysts for Zinc–Air Battery and Water Electrolysis Applications. Mater. Adv. 2025, 6 (15), 5064–5073. https://doi.org/10.1039/D5MA00193E |
2025 |
Maiti, T.#; Jadhav, A.#; Ghosh, P. Radially Evolving Spiral Wave Patterns in the Gierer–Meinhardt Reaction–Diffusion System. RSC Adv. 2025, 15, 6854–6862. |
2025 |
Mondal, K.; Maiti, T.; Ghosh, P. Role of Noise-Modulated Self-Propulsion in Driving Spatiotemporal Dynamics of Active Systems. J. Chem. Theory Comput. 2025, 21, 4405–4416.* |
2025 |
Maiti, T.; Jadhav, A.; Ghosh, P. Programmable Spiral Wave Dynamics: Instability Cascades Driven by Temporal Modulation in a Reaction–Diffusion System. J. Chem. Theory Comput. 2025, in press.* |
2025 |
Surendran, S.; Ramachandran, A.; Goreti, R. First Stereoselective Approach for Structure Revision of Nagiol and Syntheses of 2,3-Dihydroxyferruginol and Ferruginol.Org. Biomol. Chem. 2025. 2025, 23, 6924-6930 |
2025 |
Rehman, M.; Daimary, S.; Madhusudhana, R.; Goreti, R. LiTMP–LiBr Complex-Induced Lateral Lithiation and Cross Ester Condensation: Direct Access to Isocoumarins from 2-Methoxy-o-toluate Esters.Org. Chem. Front. 2025, 12(1), 173–178.* |
2025 |
Surendran, S.; Chandran, C. K.; Stephen, R. R.; Rajendar, G. A Concise Approach to Enantioselective Synthesis of Euolutchuols A, B, and D and Their Structure Assignment.J. Org. Chem. 2025. 91, 1, 401–415 |
2025 |
Surendran, S.; Chandrendu, K. C.; Rajendar, G. Correction to “An Enantioselective Approach for the Structure Revision of Isolophanthin E and Syntheses of Proposed Structures of Isolophanthins A, B, and C”.J. Nat. Prod. 2025, 88(11), 2849.* |
2025 |
Sarkar, T.; Keerthana, S.; Reyano, R. S.; Goreti, R. Dimethyl(Alkyl) Sulfates as Lewis Acid-Type Catalysts for Acetalization and Related Reactions of Carbonyl Compounds. |
2025 |
Surendran, S.; Chandrendu, K. C.; Goreti, R. An Enantioselective Approach for the Structure Revision of Isolophanthin E and Syntheses of Proposed Structures of Isolophanthins A, B, and C. J. Nat. Prod. 2025. 88, 2, 502–512 |
2025 |
Keerthana, S.; Indora, A.; Kumari, S.; Singh, N. S.; Goreti, R. A Non-Benzenoid Route to Thio-Oxybenzone Analogs: Superior UV Protection with Reduced Cytotoxicity. Chem. Asian J. 2025.** e202401526 |
2025 |
Athira, S.; Lakshmi, S. R.; Goreti, R.; Andrews, A.; Nag, P.; Channarayappa, S. K.; Vennapusa, S. R.; Mole, R. A.; Jain, A.; Jaiswal-Nagar, D. |
2025 |
Parida, S.; Ashok, N.; Kurapati, R. Test-Tube Model for Rapid and Accelerated Biodegradation of Poly(lactic acid)/Poly(butylene succinate) Blended Bioplastic Obtained from Solution Casting. Mater. Adv. 2025, 6 (24), 9817–9828. |
2025 |
Swetha, K.; Bhatnagar, A.; Lakavathu, M.; Poornima, P.; Ganesh, P.; Kamath, A.; Kurapati, R. Biological Degradation of Graphitic Carbon Nitride Sheets and Autophagy Induction in Macrophages. Nanoscale 2025, 17, 15267–15278. |
2025 |
Kaur, J.; Swetha, K.; Singh, M.; Abduvakhidov, A.; Varra, M.; Lakavathu, M.; Kurapati, R. Functionalization-Dependent Biodegradability of Two-Dimensional Antimonene by Peroxidases: Impact on Immune Modulation. Nanoscale 2025, 17 (18), 11293–11304. |
2025 |
Kurungottu, P.; Lakshmi, A. S.; Sebastian, A.; Koshi, A. S.; Shaji, A. T.; Karthik, S.; Kurapati, R. Next-Generation of Multimode Imaging and Synergistic Therapeutics for Solid Tumors. In Advancements in Cancer Theranostics: Integrating Imaging and Intervention; Springer Nature Singapore: Singapore, 2025; pp 71–98. |
2025 |
Paroor, S.; Shaji, A. T.; Bino, L.; Praveen, N. G.; Unnipurath, S.; Anil, P.; Kurapati, R. Lipid Nanoparticles for the Delivery of mRNA. In RNA Therapeutics: From siRNA to mRNA Innovations; Springer US: New York, NY, 2025; pp 341–354. |
2025 |
AnnouncementAdmission to the IISER BS-MS program, 2026
RecognitionRecognitions for IISER TVM Faculty members