Dr. yogesh kumar
Also known as: Dr. Yogesh Bainsla
Government College Palwal, GD Goenka University
About
Introduction:
My research interests focus on (i) Synthesis and characterization of nanostructured materials; (ii) Chitosan-based materials for energy conversion (iii) Porous anodic alumina; (iv) Conductive and bio-compatible polymers; (v) wearable energy conversion and storage (vi) Metal oxide based Supercapacitor (vii) Synthesis of carbon from biomass for energy storage device
Disciplines:
Atomic, Molecular, and Optical Physics, Materials Science, Materials Physics, Nanotechnology, Materials Chemistry, Electrochemistry
Skills and expertise:
Supercapacitors, Cyclic Voltammetry, Electrodes Material Characterization, Energy Storage, Battery, Lithium Ion Batteries, Nanomaterials Synthesis, Electrochemical Analysis, Materials Lithium Battery, Voltammetry, Solid State Electrochemistry, Surface Electrochemistry, Impedance, X-ray Diffraction, Thin Film Battery, FTIR Analysis, XPS Analysis, SEM Analysis, TEM Image Analysis, HR TEM, Fuel Cells, Metal Oxides, Activated Carbon, Carbon Nanotube Synthesis, EDX SEM/EDX
Employment
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GD Goenka University Research Scholar2017 - 2021
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Government College Palwal Assistant Professor2016 - Present
Education
Education history is unavailable.
Projects & Funding
Projects & funding information is unavailable.
Publications (21)
- Electrochemical performance of ZnO:MnO:VO ternary metal oxide nanocomposite for supercapacitor applications Save
- Recent Advancements in Ternary Metal Oxide-Based Electrode Materials for Supercapacitor Applications: A Review Save
- Exploring hydrothermal route for Mo-doped ZnMn2O4 ternary metal oxides electrode materials for supercapacitors Save
- Hydrothermal Synthesis of a Layered ZnO@MnO2 Nanocomposite for High-Performance Supercapacitor Electrodes Save
- PARKING SENSOR Save
- Prediction of Material Surface Area using Multiple Linear Regression Algorithm with Independent Variables Time, T emperature and Quantity Save
- Parthenium hysterophorus derived activated carbon for EDLC device application Save
- Synthesis of MnO2 nanostructure and its electrochemical studies with ratio optimization of ZnO Save
- BED Design Save
- Energy Storage Devices Save