About
Prof. Kuldeep Kumar, a senior faculty member in the Department of Physics at Sri Guru Tegh Bahadur Khalsa College, University of Delhi, is widely recognized for his contributions to Material Science, particularly in the domain of experimental studies on next-generation materials. His research is centered on the synthesis, characterization, and application of advanced materials with potential industrial and technological relevance. At the Material Science Research Laboratory, he leads several collaborative projects involving national laboratories, industry partners, and academic institutions, focusing on improving measurement techniques and establishing performance standards for novel materials. Prof. Kumar’s scholarly output reflects his deep engagement with the field and includes numerous publications accessible through his Google Scholar profile. More information about his ongoing research, academic background, and contact details can be found on his official faculty webpage.
My current interests are in Nanomaterials, Nanofibers, Crystal Structure & Lattice Vibration, Thin films (Optical & Residual Stress), solar cells (Theory & Experimental), and Band structure calculations, Atomic Collision Theory, Optical properties (Theory & Experimental).
He is currently a member of the Editorial Board in Scientific Reports.
Email: [email protected]
Employment
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University of Delhi Associate Professor2006 - Present
Education
Education history is unavailable.
Projects & Funding
Projects & funding information is unavailable.
Publications (15)
- A facile fabrication of poly(methyl methacrylate)/$$\alpha$$-NaYF$$_4$$:Eu$$^{3+}$$ tunable electrospun photoluminescent nanofibers Save
- Luminescence behavior of CsI:Ag thin films Save
- Effect of Life Expectancy on Technological Development Save
- A novel fabrication of electrospun polyacrylonitrile/NaYF4:Eu+3 light emitting nanofibers Save
- A Novel Route for Fabrication of Stable CsPbI 3 Perovskite Thin Film by Thermal Evaporation Save
- Ab initio calculation of stressed cesium iodide lattices and resulting surface plasmon resonance peak shifts Save
- Photoluminescence and applications of Ni:ZnS in photovoltaic cells Save
- Defect diffusion assisted formation of cesium metal clusters in cesium halide thin films Save
- SPR sensitivity of silver nanorods in CsBr-Ag nanocomposite thin films Save
- Metal cluster’s effect on the optical properties of cesium bromide thin films Save