• Resize textA -AA +
  • Dark Mode Icon

Efficient synthesis of 1,1-Dimethoxymethane from methanol and paraformaldehyde catalyzed by a molecularly defined Ni(II)-complex

Subaramanian, M., Mondal, A., & Balaraman, E. (2022). Efficient synthesis of 1,1-Dimethoxymethane from methanol and paraformaldehyde catalyzed by a molecularly defined Ni(II)-complex. Proceedings of the National Academy of Sciences India, Section A: Physical Sciences, 92(1). DOI: 10.1007/s40010-020-00722-9

Single-molecular Mn(I)-complex-catalyzed tandem double dehydrogenation cross-coupling of (amino)alcohols under solventless conditions with the liberation of H2 and H2O

Sivakumar, G., Subaramanian, M., & Balaraman, E. (2022). Single-molecular Mn(I)-complex-catalyzed tandem double dehydrogenation cross-coupling of (amino)alcohols under solventless conditions with the liberation of H2 and H2O. ACS Sustainable Chemistry & Engineering, 10(22), 7362-7373. DOI: 10.1021/acssuschemeng.2c01222

Next-generation Li-ion capacitor with high energy and high power by limiting alloying-intercalation process using SnO2@Graphite composite as battery type electrode

Divya, M. L., Praneetha, S., Lee, Y-S., & Aravindan, V. (2022). Next-generation Li-ion capacitor with high energy and high power by limiting alloying-intercalation process using SnO2@Graphite composite as battery type electrode. Composites Part B: Engineering, 230. DOI: 10.1016/j.compositesb.2021.109487

Interface charge density modulation of a lamellar-like spatially separated Ni9S8 nanosheet/Nb2O5 nanobelt heterostructure catalyst coupled with nitrogen and metal (M = Co, Fe, or Cu) atoms to accelerate acidic and alkaline hydrogen evolution reactions

Chandrasekaran, S., Li, N., Zhuang, Y., … Aravindan, V., et al. (2022). Interface charge density modulation of a lamellar-like spatially separated Ni9S8 nanosheet/Nb2O5 nanobelt heterostructure catalyst coupled with nitrogen and metal (M = Co, Fe, or Cu) atoms to accelerate acidic and alkaline hydrogen evolution reactions. Chemical Engineering Journal, 431. DOI: 10.1016/j.cej.2021.134073