This Compendium is a compilation of knowledge output of DSU, like patents, books, book chapters, journal publications and publications in conference proceedings, which are indexed by Scopus and/or Web of Science, UGC CARE List Group I, and Others.
DSU Research Compendium
"Enhancement of cycling stability and capacity of lithium secondary battery by engineering highly porous AlV3O9", Journal of Materials Science, vol. 55, issue 4: Springer New York LLC, pp. 1648 - 1658, 2020.
, "Functionalized Co3O4 graphitic nanoparticles: A high performance electrocatalyst for the oxygen evolution reaction", International Journal of Hydrogen Energy, vol. 45, issue 56: Elsevier Ltd, pp. 31380 - 31388, 2020.
, "Scalable chemical approach to prepare crystalline Mn2V2O7 nanoparticles: introducing a new long-term cycling cathode material for lithium-ion battery", Journal of Materials Science: Materials in Electronics, vol. 31, issue 22: Springer, pp. 19638 - 19646, 2020.
, "Sucrose-assisted rapid synthesis of multifunctional CrVO4 nanoparticles: a new high-performance cathode material for lithium ion batteries", Ionics: Springer Science and Business Media Deutschland GmbH, 2020.
, "Engineering of highly conductive and mesoporous ZrV2O7: a cathode material for lithium secondary batteries", Journal of Solid State Electrochemistry, vol. 23, no. 4, pp. 1201-1209, Apr, 2019.
, "Engineering of highly conductive and mesoporous ZrV2O7 : a cathode material for lithium secondary batteries", Journal of Solid State Electrochemistry, vol. 23, issue 4: Springer New York LLC, pp. 1201 - 1209, 2019.
, "In situ addition of graphitic carbon into a NiCo2O4/CoO composite: Enhanced catalysis toward the oxygen evolution reaction", RSC Advances, vol. 9, issue 43: Royal Society of Chemistry, pp. 24995 - 25002, 2019.
, "An introduction of new nanostructured Zn0.29V2O5 cathode material for lithium ion battery: A detailed studies on synthesis, characterization and lithium uptake", Materials Research Express, vol. 6, issue 11: Institute of Physics Publishing, 2019.
, "Synthesis of acid resistant Fe2V4O13-polypyrrole nanocomposite: Its application towards the fabrication of disposable electrochemical sensor for the detection of As(III)", Materials Research Express, vol. 6, issue 12: Institute of Physics Publishing, 2019.
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