T. K. Varadarajan

IIT Madras 
"T. K. Varadarajan"


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Mylapore Venkararama Chellappa Sastri grad student 1975 IIT Madras
 (Studies on the formation and catalytic properties of zinc molybdate)
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Shanmugam S, Viswanathan B, Varadarajan T. (2017) Polyoxometalate Based Organic-Inorganice Nanocomposites Eurasian Chemico-Technological Journal. 6: 227
Subrahmanyam C, Viswanathan B, Varadarajan T. (2017) Mesoporous V-AlPO – New Partial Oxidation Catalyst Eurasian Chemico-Technological Journal. 4: 169
Subramanian N, Viswanathan B, Varadarajan TK. (2014) A facile, morphology-controlled synthesis of potassium-containing manganese oxide nanostructures for electrochemical supercapacitor application Rsc Adv.. 4: 33911-33922
Chandravathanam S, Viswanathan B, Varadarajan TK. (2011) Effect of Citrate on the Pt State of Pt/Carbon Black Catalyst for Methanol Electro-Oxidation Studies Science of Advanced Materials. 3: 1031-1037
Janet CM, Navaladian S, Viswanathan B, et al. (2010) Heterogeneous Wet Chemical Synthesis of Superlattice-Type Hierarchical ZnO Architectures for Concurrent H2 Production and N2 Reduction The Journal of Physical Chemistry C. 114: 2622-2632
RAMAN NS, VISWANATHAN B, VARADARAJAN TK, et al. (2010) ChemInform Abstract: Catalytic Properties of YBa2Cu3O7-x and Alkaline Earth Cuprates. Cheminform. 25: no-no
Navaladian S, Viswanathan B, Varadarajan TK, et al. (2009) Fabrication of Worm-Like Nanorods and Ultrafine Nanospheres of Silver Via Solid-State Photochemical Decomposition. Nanoscale Research Letters. 4: 471-479
Kishore PS, Viswanathan B, Varadarajan TK. (2009) Electrochemical oxygen reduction reaction by Pt nanoparticles on carbon support stabilized by polyoxometalates. Journal of Nanoscience and Nanotechnology. 9: 5188-97
Satyananda Kishore P, Viswanathan B, Varadarajan TK. (2009) Silicotungstic Acid Based Carbon Supported Noble Metal Electrodes for Energy Conversion Application The Journal of Physical Chemistry C. 113: 12918-12925
Rajeswari J, Kishore PS, Viswanathan B, et al. (2009) One-dimensional MoO2 nanorods for supercapacitor applications Electrochemistry Communications. 11: 572-575
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