GR
gita rani
Also known as: gita rathee
Ch. Devi Lal University, Chaudhary Devi Lal University, Maharshi Dayanand University
About
My self working as Professor in Deptt. of Chemistry and holding the charge of Chairperson (since 2020) of the Department, Ch. Devi Lal University, Sirsa since last 19 years and my field of research work is conducting polymers, corrosion, biosensors, nanomaterials, energy storage, dye degradation etc
Employment
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Ch. Devi Lal University Chairperson2007 - Present
Education
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Chaudhary Devi Lal University Ph.D.2011 - 2014
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Maharshi Dayanand University M.Sc.1990 - 1992
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Maharshi Dayanand University B. Sc.1987 - 1990
Projects & Funding
Projects & funding information is unavailable.
Publications (53)
- Microwave‐Driven Fabrication of Blue Fluorescent Undoped and Nitrogen‐Doped Carbon Quantum Dots From Ficus religiosa for Efficient Visible‐Light Photocatalytic Degradation of Cationic Dyes: A Parametric Optimization Study Save
- A Trimetallic MWCNT@Ni‐Co‐Zn/Dobdc Nanohybrid Metal Organic Framework for Visible Light Photocatalysis and Antioxidant Applications Save
- Bio‐Waste Derived Carbon Quantum Dots Based Electrode for Enhanced Supercapacitor Performance Save
- Elucidating the comparative influence of TiO2 and MnO2 dopants on the morphological evolution, thermal stability, and charge storage kinetics of polyaniline Save
- Recent advancements of transition metal complexes derived from azomethine based ligands as potent anti-tuberculosis agents Save
- Advanced hydrothermal synthesis of TiO 2 embedded carbon quantum dots nanocomposite from potato peel biomass: comprehensive evaluation of photocatalytic activity Save
- Microstructure, dielectric behavior, and antibacterial activity of Cu-, Zn-, and Mn-modified NaTaO3 ceramics for multifunctional applications Save
- Bio-waste derived S, N-enriched carbon quantum dots: an in-depth analysis of various factors affecting photocatalysis Save
- Eco-Friendly Synthesis of B, S-Doped Carbon Quantum Dots with Synergistic Electrochemical and Antioxidant Properties Save
- Incorporation of Boron and Sulphur into Sustainable Carbon Quantum Dots as Electrode Material for Boosting the Electronic Performance of Supercapacitor Save