


21. Unraveling the Cooperative Mechanisms in Ultralow Copper-Loaded WC@NGC for Enhanced CO2 Electroreduction to Acetic Acid. D. Bagchi, M. Riyaz, J. Raj, S. Roy, A. K. Singh, A. Cherevotan, C. P. Vinod, and S. C. Peter, Chem. Mater. 2024, 36, 3464–3476.



20. A Guideline to Determine Faradaic Efficiency in Electrochemical CO2 Reduction. N. Dutta, D. Bagchi, G. Chawla, S. C. Peter, ACS Energy Lett. 2024, 9, 323.


19. Distortion-Induced Interfacial Charge Transfer at Single Cobalt Atom Secured on Ordered Intermetallic Surface Enhances Pure Oxygen Production. S. Mondal, D. Bagchi, M. Riyaz, , N. Dutta, A. K. Singh, C. P. Vinod, S. C. Peter, ACS Nano 2023, 17, 23169.


18. Highly Efficient Electrochemical Hydrogen Evolution with Ultra-Low Loading of Strongly Adhered Pt Nanoparticles on Carbon. S. Chakraborty, S. Servottam, P. K. Samal, D. Kalita, A. Rao, D. Bagchi, S. C. Peter and M. Eswaramoorthy, Small, 2023, 19, 2303495.

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17. Intrinsic Charge Polarization in Bi19S27Cl3 Nano Roads Promotes Selective C‐C Coupling Reaction During Photoreduction of CO2 to Ethanol. K. Das, R. Das, M. Riyaz, A. Parui, D. Bagchi, A. K. Singh, A. K. Singh, C. P. Vinod and S. C. Peter, Adv. Mater., 2022, 35, 2205994.
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16. Structural Ordering Enhances Highly Selective Production of Acetic Acid from CO2 at Ultra-Low Potential. S. Sarkar, J. Raj, D. Bagchi, A. Cherevotan, C. P. Vinod and S. C. Peter, EES Catalysis, 2023, 1, 162-170.
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15. Cobalt-Induced Phase Transformation of Ni3Ga4 Generates Chiral Intermetallic Co3Ni3Ga8. A. K. Singh, W. Wang, D. P. Panda, D. Bagchi, D. Goud, B. Ray, J. He and S. C. Peter, J. Am. Chem. Soc., 2023, 145, 1433-1440.


14. Wurtzite CuGaS2 with an In‐Situ‐Formed CuO Layer Photocatalyzes CO2 Conversion to Ethylene with High Selectivity. S. Chakraborty, R. Das, M. Riyaz, K. Das, A. K. Singh, D. Bagchi, C. P. Vinod and S. C. Peter, Angew. Chem. Int. Ed., 2022, 62, e202216613.


13. An Integrated Material Design and Catalytic Perspective on Electrochemical CO2 Reduction. D. Bagchi, S. Roy, S. C. Sarma and S. C. Peter. Adv. Funct. Mater. 2022, 2209023.


12. Optimized Metal Deficiency Induced Operando Phase Transformation Enhances Charge Polarization Promoting Hydrogen Evolution Reaction. D. Bagchi, A. K. Singh, S. Sarkar, S. Ch. Sarma, D. Mumbaraddi, S. D. Ramarao, S. C. Peter. Chem. Mater. 2022, 34, 8999–9008.

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11. Tuning Hybridization and Charge Polarization in Metal Nanoparticles Dispersed over Schiff Base Functionalized SBA-15 Enhances CO2 Capture and Conversion to Formic Acid. A. Cherevotan, B. Ray, A. Yadav, D. Bagchi, A. K. Singh, M. Riyaz, S. R. Churipard, V. Naral, K. Kaur, U. K. Gautam, C. P. Vinod, and S. C. Peter, J. Mater. Chem. A, 2022, 10, 18354-18362.


10. Strain Induced Phase Transformation in Iron Oxide for Enhanced Production of Higher Alcohols from CO2. Devender Goud, S. R. Churipard, D. Bagchi, A. K. Singh, M. Riyaz, C. P. Vinod, and S. C. Peter. ACS Catal. 2022, 12, 11118–11128.


9. Improvement in OER performance of NiFe LDH grown in presence of 1T rich MoS2. S. Chakraborty, Shivanna Marappa, S. Agarwal, D. Bagchi, A. Rao, C.P. Vinod, S. C. Peter, A. Singh and M. Eswaramoorthy. ACS Appl. Mater. Inter., 2022, 14, 31951–31961.


8. Chemical Modulation of Active Sites in Ordered Pd2Ge Lattice Triggering Kinetics and Complete Electron Transfer Mechanism of Oxygen Reduction Reaction. S. Mondal, D. Bagchi, M. Riyaz, S. Sarkar, A. K. Singh, C. P. Vinod, S. C. Peter. J. Am. Chem Soc., 2022, 144, 11859–11869.

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7. Morphology Tuned Pt3Ge Accelerates Water Dissociation to Industrial Standard Hydrogen Production in wide pH Range. S. Mondal, S. Sarkar, D. Bagchi, T. Das, R. Das, A. K. Singh, P. K. Prasanna, C. P. Vinod, S. Chakraborty and S. C. Peter. Adv. Mater., 2022, 2202294.


6. Structure-Tailored Surface Oxide on Cu–Ga Intermetallics Enhances CO2 Reduction Selectivity to Methanol at Ultralow Potential. D. Bagchi, J. Raj, A. K. Singh, A. Cherevotan, S. Roy, K. S. Manoj, C. P. Vinod and S. C. Peter, Adv. Mater., 2022, 34, 2109426.


5. Potential- and Time-Dependent Dynamic Nature of an Oxide-Derived PdIn Nanocatalyst during Electrochemical CO2 Reduction. D. Bagchi, S. Sarkar, A. K. Singh, C. P. Vinod and S. C. Peter, ACS Nano, 2022, 16, 6185–6196.


4. Mechanistic insights into the promotional effect of Ni substitution in non-noble metal carbides for highly enhanced water splitting. D. Bagchi, S. Roy, L. Dheer, S. C. Sarma, V. Rajaji, C. Narayana, U. V. Waghmare and S. C. Peter, Appl. Catal. B., 2021, 298, 120560.


3. Ultralow non-noble metal loaded MOF derived bi-functional electrocatalysts for the oxygen evolution and reduction reactions. D. Bagchi, N. Phukan, S. Sarkar, R. Das, B. Ray, P. Bellare, N. Ravishankar and S. C. Peter, J. Mater. Chem. A, 2021, 9, 9319-9326.


2. Deconvolution of phase–size–strain effects in metal carbide nanocrystals for enhanced hydrogen evolution. S. Roy, D. Bagchi, V. Vemuri, S. Ch. Sarma, V. Ahuja, V. Rajaji, C. Narayana and S. C. Peter, Nanoscale, 2020, 12, 15414-15425.


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Synergetic Effect of Ni-Substituted Pd2Ge Ordered Intermetallic Nanocomposites for Efficient Electrooxidation of Ethanol in Alkaline Media. A. R. Rajamani, P. C. Ashly, L. Dheer, S. C. Sarma, S. Sarkar, D. Bagchi, U. V. Waghmare and S. C. Peter, ACS Appl. Energy Mater., 2019, 2, 7132-7141.
