Manoj Kumar Khanna
Department of Electronic Science, South Campus, University of Delhi
About
* 33 Research Publications in Reviewed International and National Journals.
▪ Published 21 Papers in various National and International Conferences.
▪ Co-PI in a research project entitled “Large area, patterned growth and engineering the electronic structure of MoS2 thin films under ion irradiation for high-performance Gas Sensor and TFTs device applications” funded by Science and Engineering Research Board (SERB), 2023.
▪ Presently guiding 04 students for Ph.D. degrees as Supervisor.
▪ Acted as Supervisor of three Ph.D. students (03 degrees awarded)
▪ Principal Investigator in Delhi University funded Innovation Project titled “Study of Rise in Consumption of the Mobiles Phones/Electronics Gadgets in delhi region and
Material Analysis Projecting Potential Electronic Waste & their Impact on
Environment (BCAS-101)”.
▪ Principal Investigator in Delhi University funded Innovation Project titled “Assessment of brominated flame retardants in mobile phones/ electronic gadgets, their consumption pattern in North India region and carbon foot prints from electronic waste (BCAS 206)”.
Employment
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Department of Electronic Science, South Campus, University of Delhi Professor
Education
Education history is unavailable.
Projects & Funding
Projects & funding information is unavailable.
Publications (33)
- Corrigendum to "Influence of growth temperature on the magnetization dynamics of sputtered CoFeB thin films on various substrates and their microwave device functionality (vol 988, 174314, 2024) Save
- Thickness dependent structural, morphological, and magnetic properties of PLD grown CoFe thin film Save
- Influence of growth temperature on the magnetization dynamics of sputtered CoFeB thin films on various substrates and their microwave device functionality Save
- Prospects for lead free perovskite for photovoltaic applications and biological impacts: Challenges and opportunities Save
- Interacting with Futuristic Topological Quantum Materials: A Potential Candidate for Spintronics Devices Save
- An investigation of dielectric properties of ultrathin TiOx-SiOx nanocomposite layers on Si substrate Save
- Analysis of graphene coated optical fiber for visible range refractive index sensing Save
- Stability of carbon quantum dots: a critical review Save
- One-Pot Facile Synthesis of CuO–CdWO4 Nanocomposite for Photocatalytic Hydrogen Production Save
- Biodegradable acid based nanocomposite-CuO-ZnO-Ni(OH)2/PA: A novel material for water cleansing Save