SV
Siva Vadivel
Karpagam Academy of Higher Education, Kalasalingam Academy of Research and Education
About
Area of Research
Organic/ metal-organic single crystals for optoelectronics applications
X-ray Crystallography
Computational Chemistry (Quantum chemical calculations)
Nanomaterials and Thin-film for Energy and Environmental applications
Metal-organic frameworks (MOFs) & Polymer nanocomposites for supercapacitor applications
Employment
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Karpagam Academy of Higher Education Assistant Professor2022 - Present
Education
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Kalasalingam Academy of Research and Education Ph.D2014 - 2018
Projects & Funding
Projects & funding information is unavailable.
Publications (84)
- Core-shell Cadmium selenide-Zeolitic imidazolate framework-67 with long-term capacitance retention for energy storage applications Save
- Design and construction of MoS2@Carbon composite as a potential anode for sodium-ion batteries Save
- Heterostructure cadmium sulfide/reduced graphene oxide/ Zeolitic imidazolate framework-8 ternary nanocomposite as cathode material for High performance asymmetric supercapacitor device Save
- Correction to “Hydrothermally Synthesized Mn2V2O7 Nanopebble-Decorated ZIF-67: A Promising Cathode Material for Energy Storage Applications” Save
- Hydrothermally Synthesized Mn2V2O7 Nanopebble-Decorated ZIF-67: A Promising Cathode Material for Energy Storage Applications Save
- In Situ Growth of Biodegradable Chitosan‐Encapsulated Zeolite‐Structured MOFs: A Potential Therapeutic Drug for Triple‐Negative Breast Cancer Save
- Construction of a hybrid MoS2@polythiophene heterojunction photocatalyst for enhanced degradation of pharmaceutical pollutants and dyes Save
- Harnessing the Proficient Lithium-Ion Conducting Solid Biopolymer Electrolytes based on Mesquite Gum Infused with Lithium Acetate for Eco-Susceptible Supercapacitor Applications Save
- Harnessing the Proficient Lithium-Ion Conducting Solid Biopolymer Electrolytes based on Mesquite Gum for Eco-Susceptible Supercapacitor Applications Save
- In-situ chemical oxidative polymerization of tungsten disulfide/Polythiophene nanocomposites: Enhanced UV-driven Photocatalytic degradation of Organic Pollutants Save