Nasarul Islam
Higher Education Department J&K, HKM Govt Degree College Bandipora, University of Kashmir, Guru Nanak Dev University
About
My research interest encompasses broadly Theoretical Inorganic and Organic chemistry. Using computational approaches, I worked on developing OLED and nonlinear device materials during my Ph.D. I am interested in performing computational investigations over a broad spectrum of systems, ranging from molecules to materials, using various quantum mechanical methods. The main focus of my research is on the electronic structure and spectral properties of chiro-optic systems, energy storage and conversion systems, structure-activity relationships, and microscopic structure-property relationship for applications based on transport, optical, magnetic, and electrical behaviour of condensed systems. The theoretically designed charge transport material for OLED devices displaying good efficiency is then synthesized under laboratory conditions.
Teaching Credits at College
Theory
CH-102 (Chemical Bonding); CH-201 (Thermodynamics); CH-303 (Spectroscopy & Photochemistry) CH-403 (Coordination Chemistry); CH-502 (Quantum Chemistry-I); CH-601 (Material Chemistry)
Practical
CP-201 (Instrumentation Techniques); CP-301 (Inorganic Synthesis); CP- 401 (Modern Analytical
Techniques (MAT)
Employment
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Higher Education Department J&K Assistant Professor2017 - Present
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HKM Govt Degree College Bandipora Assistant Professor2017 - Present
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Guru Nanak Dev University Postdoctoral fellow2014 - 2017
Education
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University of Kashmir Ph. D2010 - 2014
Projects & Funding
Projects & funding information is unavailable.
Publications (63)
- FLOATING FISH REARING STRUCTURE Save
- AQUACULTURE TANK MONITORING UNIT Save
- ML-based atom-centered 3D-QSAR, docking, ADME and DFT studies of amino-pyrimidine derivatives as FGFR4 anticancer inhibitors Save
- Advancements in ionic liquid-based corrosion inhibitors for sustainable protection strategies: from experimental to computational insights Save
- Fabrication of dual S-scheme based CuWO4/NiFe/WO3 heterojunction for visible-light-induced degradation and reduction applications Save
- Unveiling the potential of NiFe layered double hydroxide (LDH)/CuWO4 S-scheme heterojunction for sulfamethoxazole photodegradation and nitrobenzene photoreduction to aniline Save
- Cu2O/WO3: A promising S-scheme heterojunction for photocatalyzed degradation of carbamazepine and reduction of nitrobenzene Save
- An Updated Overview on the Synthesis and Anticancer Evaluation of Quinazoline Derivatives Save
- Molecular structure and DFT calculations of aqua(5,10,15,20-tetrakis[4-(benzoyloxy)phenyl] porphyrinato)magnesium-dioxane Save
- Organocatalytic Synthesis and DFT Study of Versatile Biologically Active Scaffold of Isatylidene Malononitrile Derivatives Save