Skip to main content
Department of chemistry

Researches

The department has a strategic plan for future research which contributes to the prosperity of the society. We foster world-class research and outstanding chemical education, as well as we strengthen our students, faculty, staff, and alumni to interact with the local, national, and global community.

Research Groups:

  • Organic Chemistry
  • Inorganic Chemistry
  • Analytical Chemistry
  • Electro analytical Chemistry
  • Molecular Spectroscopy
  • Electrochemistry
  • Surface Chemistry and Catalysis
  • Theoretical Chemistry

 

# Title Research Year
671 Synthesis, Characterization and Catalytic Activity of Nanocrystalline Ce2(MoO4)3/SiO2 as a Novel Catalyst for the Selective Production of Anhydrous Formaldehyde from Methanol 2019
672 Design and diversity-oriented synthesis of benzo- and pyrido-annulated mediumsized N,S-heterocycles via thio-Michael and Friedel-Crafts approaches 2019
673 Zinc hydroxide nitrate nanosheets conversion into hierarchical zeolitic imidazolate frameworks nanocomposite and their application for CO2 sorption 2019
674 Friedel–Crafts Chemistry. Part 53. Divergent and
Diversity-Oriented Synthesis of Condensed Indole
Scaffolds via Friedel–Crafts Ring Closure Approach
2019
675 Synthesis of [3 + 3] β-ketoenamine-tethered covalent organic frameworks (COFs) for high-performance supercapacitance and CO2 storage 2019
676 Ultrastable tetraphenyl-p-phenylenediamine-based covalent organic frameworks as platforms for high-performance electrochemical supercapacitors
2019
677 Novel Heterocyclic Hybrids Based on 2-Pyrazoline: Synthesis and Assessment of
Anti-Inflammatory and Analgesic Activities
2019
678 Controlled synthesis of iron oxide NPs derived from conventionally and
ultrasonically prepared iron(III) coordination polymer: Potential
remediation and catalytic degradation of methylene blue
2019
679 Friedel–Crafts Chemistry. Part 53. Divergent and
Diversity-Oriented Synthesis of Condensed Indole
Scaffolds via Friedel–Crafts Ring Closure Approach
2019
680 Conducting copolymers nanocomposite coatings with aggregation-controlled luminescence and efficient corrosion inhibition properties 2019