SG
SIVAPRAKASH GURUSAMY
KalaignarKarunanidhi Institute of Technology, Jiangsu University, Alagappa University
About
To develop scalable routes for the production of Nanocomposite materials catalytic application, Polyhydroxybutyrate(PHB), bioenergy(biodiesel, biogas & bioethanol) & biopolymers from unutilized raw materials such as algal biomass, Microorganisms, crop residue, and molasses. Nanostructure incorporated organic synthesis of nanomaterials for various energy applications. Biohydrogen production from Agri waste and Industrial waste materials.
Employment
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KalaignarKarunanidhi Institute of Technology Research2025 - Present
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Jiangsu University Post-Doctoral Researcher2023 - 2025
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Alagappa University Teaching faculty2020 - 2023
Education
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Alagappa University Ph.D2013 - 2020
Projects & Funding
Projects & funding information is unavailable.
Publications (24)
- Structural, spectroscopic characterization, solvent effect, topological aspects, and biological investigation of abietane diterpene pisiferic acid Save
- Edible Fe2ZnO4nanocomposites prolong shelf life and control black mold rot in table grapes: Enzymatic mechanisms Save
- Kappa-Carrageenan loaded Ginsenoside: Biological Control of A. carbonarius, Antioxidant, Antibacterial and Wound Healing Save
- Dual properties integrated CoMn2O4 nanocomposite: Heterogeneous catalyst on seaweed biodiesel and supercapacitor applications Save
- Edible Fe2ZnO4 nanocomposite for extending shelf-life and preventing blue mold decay in apples Save
- Efficacy and mechanism of chitosan nanoparticles containing lemon essential oil against blue mold decay of apples Save
- Chitosan stabilized lemon essential oil nanoemulsion controls black mold rot and maintains quality of table grapes Save
- Immobilization of aldo-keto reductase on dopamine/polyethyleneimine functionalized magnetic cellulose nanocrystals to enhance the detoxification of patulin in fresh pear juice Save
- Microbial Production of Biopolymers: Recent Advancements and Their Applications Save
- Simultaneous biodiesel and bioelectricity generation utilizing dairy and rice mill wastewater by freshwater microalgal isolate: An integrated energy-efficient approach Save