About
Dr Thandavaryan Maiyalagan received his Ph.D in Physical chemistry from the Indian Institute of Technology, Madras, and completed postdoctoral programs at the Newcastle University (UK) and at the University of Texas, Austin (USA). His main research interests concern new materials and their electrochemical properties for energy conversion and storage devices, electrocatalysts, fuel cells and biosensors.He has published numerous articles on the innovative design of the materials for energy conversion and storage in well-reputed journals such as Nature Commun, ACS catalysis, Nanoenergy. J. Materials Chemistry A, and Nanoscale etc...
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Publications (190)
- Graphene supported Pd–Cu bimetallic nanoparticles as efficient catalyst for electrooxidation of methanol in alkaline media Save
- Iron nickel sulphide embedded on multi-walled carbon nanotubes as efficient electrocatalysts for oxygen evolution reaction in alkaline medium Save
- Amorphous cobalt boride nanoparticles incorporated vanadium carbide MXene composite for asymmetric supercapacitor applications Save
- Graphitic carbon nitride encapsulated sonochemically synthesized β-nickel hydroxide nanocomposites for electrocatalytic hydrogen generation Save
- Lollipop-shaped interconnected MnO2 nanotube/Co3O4 polyhedron composite derived from zeolitic-imidazolate framework-67 as an efficient electrocatalyst for oxygen evolution reaction Save
- One-step facile hydrothermal synthesis of rGO-CoS2 nanocomposites for high performance HER electrocatalysts Save
- Electrochemical investigation on hierarchical sea urchin shaped zinc nickel selenide for efficient supercapacitor Save
- Excellent nitroarene reduction activity of ilmenite nanochips prepared by facile template-free hydrothermal synthesis Save
- Influence of carbonaceous materials supported nanostructured nickel phosphide as an electrocatalyst for the hydrogen evolution reaction Save
- Thermal conductive thin, flexible composite sheet of boron nitride aggregates and alumina for enhanced through plane conductivity Save